Showing 228 items matching "history method"
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Whitehorse Historical Society Inc.Book - Oral History Handbook, 1997
... Comprehensive guide to oral history methods and procedures...Comprehensive guide to oral history methods and procedures...Comprehensive guide to oral history methods and procedures Comprehensive guide to oral history methods and procedures Oral History History Local history Comprehensive guide to oral history methods and procedures Oral History Handbook Book Oral History Handbook Robertson, Beth M (ed) ...Comprehensive guide to oral history methods and proceduresComprehensive guide to oral history methods and proceduresComprehensive guide to oral history methods and proceduresoral history, history, local history -
Federation University Historical CollectionDocument, Ken Clements, Peterborough Puzzles, 2009, 2009
... ...history method...Contents include coastal features, local Aborigines, Bay of Martyrs, Massacre Bay, Massacre Hill, Buckley Creek Run, Pioneer Pastoralists, British Traversers, settlers, Peterborough, Maps, tourism, history method. Photographs by Laurie Moore....Contents include coastal features, local Aborigines, Bay of Martyrs, Massacre Bay, Massacre Hill, Buckley Creek Run, Pioneer Pastoralists, British Traversers, settlers, Peterborough, Maps, tourism, history method. Photographs by Laurie Moore. Peterborough Puzzles, 2009 Document Ken Clements Laurie Moore ...Massacre Bay is located on Victoria's Great Ocean Road, and is in the centre of the Bay of Martyrs. The bay consists of 20 m high, red limestone bluffs. This paper by Ken Clements considers the origin of the term martyr in connection to this location, and where the Aboriginal massacre may have taken place. Thirteen page document by Ken Clements relating to Peterborough, Victoria. Contents include coastal features, local Aborigines, Bay of Martyrs, Massacre Bay, Massacre Hill, Buckley Creek Run, Pioneer Pastoralists, British Traversers, settlers, Peterborough, Maps, tourism, history method. Photographs by Laurie Moore.aborigines, bay of martyrs, massacre bay, massacre hill, buckley creek run, pioneer pastoralists, british traversers, settlers, peterborough, maps, tourism, history method, childers cove, barque children, murnane bay, sandy bay, dog trap bay, buckley creek, viviennes lookeout, stanhope bay, buttres bay, burnies beach, armstrong creek, flaxman hill, antares rock, lovers nook, crofts bay, clements, worm bay, halladale point, the well, wold dog cove, james irvine monument, curdies inlet, squirrel creek, wallaby creek, boggy creek, whiskey creek, pioneer beach, schomberg rock, young australia, spit, crown of thorns, newfield bay, the grotto, london bridge, point hesse, high cliffs, the arch, cape martyr, little massacre bay, aboriginal massacre, ken clements -
Whitehorse Historical Society Inc.Book - Book "Washing", A & E Block (Publishing) Ltd, 1992
... Book traces history of methods of household washing from 1900 to 1990....Book traces history of methods of household washing from 1900 to 1990. ...Book came from Nunawading Library. Book traces history of methods of household washing from 1900 to 1990.Hard cover book "Washing" by Gill Tanner and Tim Wood. Illustration of washing board on cover"Washing" Gill Tanner and Tim Woodwashing -
Ringwood and District Historical SocietyBook, Exercise book of Cub Preliminary Course notes by L.A. Malius, 1st Ringwood. Circa 1960, Prior to 1966
... Exercise book containing History, Principles and Methods of Cubbing. Handwritten by L.A. ...Brief description for 1st Ringwood Exercise book containing History, Principles and Methods of Cubbing. Handwritten by L.A. ...Brief description for 1st RingwoodExercise book containing History, Principles and Methods of Cubbing. Handwritten by L.A. Malius when attending a Cub preliminary course. +Additional Keywords: Malius, L.A. -
Ringwood and District Historical SocietyBook, Australian Scholarly Publishing Pty Ltd, Our Schools and the War - Rosalie Triolo, 2012
... Dr Rosalie Triolo is the History Method lecturer in the Faculty of Education at Monash University and is active as a writer and presenter in state and national History Education communities. ...Dr Rosalie Triolo is the History Method lecturer in the Faculty of Education at Monash University and is active as a writer and presenter in state and national History Education communities. ...Rosalie Triolo presented Our Schools and the War as Ringwood and District Historical Society guest speaker - June, 2022. Dr Rosalie Triolo is the History Method lecturer in the Faculty of Education at Monash University and is active as a writer and presenter in state and national History Education communities. She taught for 13 years in country and metropolitan Victorian government secondary schools, and has been involved for 30 years with the History Teachers’ Association of Victoria. She p[resents regularly to academic and general audiences on different aspects of the Great War and Australian education, and has led battlefield tours for History teachers as well as Australian History fellowships for student-teachers. The doctorate on which this book is based was awarded a Monash University Mollie Holman medal.Soft cover book detailing how The Great War profoundly touched the lives of Australian teachers, school children, and local communities.Handwritten inscription - For RDHS, Congratulations on all you are doing so well. Sincerely, Rosalie Triolo, June 2022. -
Flagstaff Hill Maritime Museum and VillageEquipment - Rocket set, John Dennett, ca. 1860s
... history and marine technology. Lifesaving has been an important part of the services performed from Warrnambool's very early days, supported by State and Local Government, and based on the methods and experience of Great Britain. ...This rescue line-throwing rocket set was made for the Dennett rocket system, which was used by the Rocket Rescue crews in South West Victoria from around the 1860s to the 1890s. John Dennett - John Dennett was from Carisbrooke, in the Ilse of Wight, UK. In 1826 he invented, patented and demonstrated an improved method of rocket powered, line firing rescue equipment for saving lives. The rockets had a longer range than the mortars being used, they were lighter, needed less preparation time, only needed one line for repeated shots, and fewer people were needed to move the equipment. Very favourable reports of Dennett’s rockets were received by those in charge of His Majesty’s Naval and Military services. In 1832, Dennett’s rocket-thrown line was sent out to the wreck of the ‘Bainbridge’, and was responsible for nineteen survivors coming ashore in two boatloads, along the fired line. Dennett’s rocket received national fame, and a one-year contract to supply rockets to the Coastguards. He became known as ‘Rocket Man’ and his rockets were used in rescues at least until 1890, when his son Horatio was running the business. A rocket weighing 23 lb would have a range of about 250 yards (228 metres), on average. Saving lives in Warrnambool – The coastline of South West Victoria has had over 600 shipwrecks and many lost lives; even in Warrnambool’s Lady Bay there were around 16 known shipwrecks between 1850 and 1905, with eight lives lost. In 1859 the first Government-built lifeboat arrived at Warrnambool Harbour and a shed was soon built to house it, followed in 1864 by a rocket house to safely store the Rocket Rescue equipment. In 1878 the buildings were moved to the Breakwater area, and in 1910 the new Lifeboat Warrnambool arrived with its ‘self-righting’ design. For almost one hundred years the lifeboat and rocket crews, mostly local volunteers, trained regularly to maintain and improve their skills, summoned when needed by alarms, gunshots, ringing bells and foghorns. Some became local heroes but all served an important role. By the end of the 1950s the lifeboat and rescue equipment had become obsolete. Rocket Rescue Method - The first use of a lifesaving rocket rescue system is often credited to Captain Manby and his invention of a life mortar, first used in 1808 to fire a line onto a ship to rescue lives. Henry Trengrouse’s invention of 1820 was the first to use a sky rocket’s power to throw a line, and his invention included a chair for carrying the shipwrecked victims to shore. In 1832 John Dennett invented a rocket specifically for shore to ship rescue. It had an iron case and an 8 foot pole attached and could shoot the line as far as 250 yards (about 230 metres). From the 1860s the rocket rescue apparatus was in use. It comprised a breeches buoy and traveller block that was suspended on a line and manually pulled to and from the distressed vessel carrying passengers and items. Colonel Boxer, who had invented an early line-thrower, designed a rocket in 1865 with a range from 300 to 470 yards. It was the first two-stage rocket, with two rockets placed one in front of the other in a tube that carried the rescue line. The hemp line was faked, or coiled, in a particular way in a faking box to prevent twists and tangles when fired, and the angle of firing the rocket was measured by a quadrant-type instrument on the side of the rocket machine. Schermuly invented the line-throwing pistol around 1920, which used a small cartridge to fire the rocket. Victoria’s Government adopted lifesaving methods based on Her Majesty’s Coast Guard in Great Britain, which used Colonel Boxer’s rocket apparatus rescue method. The British Board of Trade published instructions in 1850 for both the beach rescue crew and ship’s crew. It involved setting up the rocket launcher on shore at a particular angle measured by the quadrant, inserting a rocket that had a light-weight line attached, then firing it across the stranded vessel. A tally board was then sent out with instructions in four languages. The ship’s crew would haul on the line to bring out the continuous whip line and attach the whip block to a mast or sturdy part the ship. The rescue crew on shore then hauled out a heavier hawser line, which the ship’s crew fixed above the whip block. The hawser is then tightened using the block on the shore end of the whip. The breeches buoy and endless whip are then attached to the traveller block on the hawser, allowing the shore crew to haul the buoy to and from the vessel, rescuing the stranded crew one at a time. The rocket system could also be used from one ship to another.The Dennett rocket set is quite rare - there are not many examples in existence and little information is available. This Dennett's rocket set is significant for its connection with local history, maritime history and marine technology. Lifesaving has been an important part of the services performed from Warrnambool's very early days, supported by State and Local Government, and based on the methods and experience of Great Britain. Hundreds of shipwrecks along the coast are evidence of the rough weather and rugged coastline. Ordinary citizens, the Harbour employees, and the volunteer boat and rescue crew, saved lives in adverse circumstances. Some were recognised as heroes, others went unrecognised. In Lady Bay, Warrnambool, there were around 16 known shipwrecks between 1850 and 1905. Many lives were saved but tragically, eight lives were lost.A Dennett rocket set in six parts; the rocket head, three shafts (poles) and two rocket-head toting boxes. The rocket head, mounted on one of the shafts, is a long, red painted, iron tube with rounded ends and a protruding fitting around each end. The wooden rocket shafts are octagonal, with a metal sheath at the ends, carved elongated slots towards each end, and a scribed channel above the black foot. The rocket head toting boxes are thick timber, covered in fabric and painted black. They have a hinged wooden lid that slants downwards from back to front, and a metal closure. Small deliberate holes, in groups of four, on the box’s sides, indicate missing attachments, likely to have been handles. Impressed one a shaft "8"flagstaff hill maritime museum & village, flagstaff hill, maritime museum, maritime village, warrnambool, great ocean road, shipwreck, life-saving, lifesaving, rescue crew, rescue, rocket rescue, maritime accidents, shipwreck victim, rocket crew, beach rescue, line rescue, rescue equipment, rocket firing equipment, rocket rescue equipment, rocket apparatus, beach apparatus, petticoat breeches, breeches buoy, rocket house, rocket shed, lifeboat men, rocket equipment, rocket machine, rocket head, rocket launcher, rocket line, marine technology, william schermuly, line-firing pistol, line throwing gun, schermuly pistol, pistol rocket apparatus, beach rescue set, traveller, block, running block, pulley, hawser, faking, faking box, faked line, rescue boat, lifeboat, lady bay, warrnambool harbour, port of warrnambool, tramway jetty, volunteer lifesavers, volunteer crew, breakwater, lifeboat warrnambool, rocket rescue method, rocket rescue apparatus, captain manby, mortar, henry trengrouse, sky rocket, john dennett, shore to ship, colonel boxer, two-stage rocket, italian hemp, quadrant, schermuly, line-throwing pistol, line throwing cartridge, rocket apparatus rescue, stranded vessel, tally board, light line, whip line, endless whip, petticoat buoy, traveller chair, traveller block, her majesty’s coast guard, harbour board, line thrower, line throwing, beach cart, hand barrow, sand anchor, hawser cutter, life jacket, faking board, irish hand barrow, rocket head toting box, explosives, rocket shaft, rocket pole -
Flagstaff Hill Maritime Museum and VillageEquipment - Rocket Launcher, John Dennett, 1860s
... history and marine technology. Lifesaving has been an important part of the services performed from Warrnambool's very early days, supported by State and Local Government, and based on the methods and experience of Great Britain. ...This rocket launching machine is used in conjunction with the Dennett Rocket Set. Both are part of the rocket rescue equipment that launches the line-throwing rescue rockets. A light line is threaded through the carved holes in the 8 foot long shaft and attached to the scribed channel at the base of the shaft. The rocket head is fitted to the shaft and inserted into the machine. The machine is set at an angle determined by the person in charge of the rescue crew, and the legs and base of the machine are adjusted accordingly with the use of the quadrant, or protractor, and plumb-bob on the side of the machine. The rocket is then ignited and fired across the vessel in distress. John Dennett - John Dennett was from Carisbrooke, in the Ilse of Wight, UK. In 1826 he invented, patented and demonstrated an improved method of rocket powered, line firing rescue equipment for saving lives. The rockets had a longer range than the mortars being used, they were lighter, needed less preparation time, only needed one line for repeated shots, and fewer people were needed to move the equipment. Very favourable reports of Dennett’s rockets were received by those in charge of His Majesty’s Naval and Military services. In 1832, Dennett’s rocket-thrown line was sent out to the wreck of the ‘Bainbridge’, and was responsible for nineteen survivors coming ashore in two boatloads, along the fired line. Dennett’s rocket received national fame, and a one-year contract to supply rockets to the Coastguards. He became known as ‘Rocket Man’ and his rockets were used in rescues at least until 1890, when his son Horatio was running the business. A rocket weighing 23 lb would have a range of about 250 yards (228 metres), on average. Saving lives in Warrnambool – The coastline of South West Victoria is the site of over 600 shipwrecks and many lost lives; even in Warrnambool’s Lady Bay there were around 16 known shipwrecks between 1850 and 1905, with eight lives lost. In 1859 the first Government-built lifeboat arrived at Warrnambool Harbour and a shed was soon built to house it. In 1858 the provision of rocket and mortar apparatus was approved for lifeboat stations in Victoria, and in 1864 a rocket house was built to safely store the rocket rescue equipment. In 1878 the buildings were moved to the Breakwater area, and in 1910 the new Lifeboat Warrnambool arrived with its ‘self-righting’ design. For almost a hundred years the lifeboat and rocket crews, mostly local volunteers, trained regularly to maintain their rescue skills. They were summoned when needed by alarms, gunshots, ringing bells and foghorns. Some became local heroes but all served an important role. By the end of the 1950s the lifeboat and rescue equipment had become obsolete. Rocket Rescue Method - The Government of Victoria adopted lifesaving methods based on Her Majesty’s Coast Guard in Great Britain. It authorised the first line-throwing rescue system in 1858. Captain Manby’s mortar powered a projectile connected to rope, invented in 1808. The equipment was updated to John Dennett’s 8-foot shaft and rocket method that had a longer range of about 250 yards. From the 1860s the breeches buoy and traveller block rocket rescue apparatus was in use. It was suspended on a hawser line and manually pulled to and from the distressed vessel carrying passengers and items. In the early 1870s Colonel Boxer’s rocket rescue method became the standard in Victoria. His two-stage rockets, charged by a gunpowder composition, could fire the line up to 500-600 yards, although 1000 yards range was possible. Boxer’s rocket carried the light line, which was faked, or coiled, in a particular way between pegs in a faking box to prevent twists and tangles when fired. The angle of firing the rocket to the vessel in distress was measured by a quadrant-type instrument on the side of the rocket machine. Decades later, in about 1920, Schermuly invented the line-throwing pistol that used a small cartridge to fire the rocket. The British Board of Trade published instructions for both the beach rescue crew and ship’s crew. It involved setting up the rocket launcher on shore at a particular angle measured by the quadrant, inserting a rocket that had a light-weight line threaded through its shaft, and then firing it across the stranded vessel, the line issuing freely from the faking board. A tally board was then sent out to the ship with instructions in four languages. The ship’s crew would haul on the line to bring out the heavier, continuous whip line, then secure the attached whip block to the mast or other sturdy part the ship. The rescue crew on shore then hauled out a stronger hawser line, which the ship’s crew fixed above the whip block. The hawser was then tightened using the block on the shore end of the whip. The breeches buoy and endless whip are then attached to the traveller block on the hawser, allowing the shore crew to haul the breeches buoy to and from the vessel, rescuing the stranded crew one at a time. This rocket launcher machine is significant for its connection with local history, maritime history and marine technology. Lifesaving has been an important part of the services performed from Warrnambool's very early days, supported by State and Local Government, and based on the methods and experience of Great Britain. Hundreds of shipwrecks along the coast are evidence of the rough weather and rugged coastline. Ordinary citizens, the Harbour employees, and the volunteer boat and rescue crew, saved lives in adverse circumstances. Some were recognised as heroes, others went unrecognised. In Lady Bay, Warrnambool, there were around 16 known shipwrecks between 1850 and 1905. Many lives were saved but tragically, eight lives were lost.Rocket launcher, named a Rocket Machine, and storage box. Launcher has a long open metal channel with a spike at the base, and narrow, rectangular device, which is the line-firing rocket machine, at the top, all painted blue. Two hinged wooden legs are attached where the channel and machine meet. The side of the machine has an oval cut-out window and an attached quadrant, or protractor, with a plumb-bob on it. The quadrant has angles marked in degrees. The long protective box has white stencilled letters along the side. Its lid has three hinges and is fastened with two metal latches.On box “ROCKET MACHINE” On quadrant “10” “20” “30” “40”flagstaff hill maritime museum & village, flagstaff hill, maritime museum, maritime village, warrnambool, great ocean road, shipwreck, life-saving, lifesaving, rescue crew, rescue, rocket rescue, maritime accidents, shipwreck victim, rocket crew, beach rescue, line rescue, rescue equipment, rocket firing equipment, rocket rescue equipment, rocket apparatus, beach apparatus, petticoat breeches, breeches buoy, rocket house, rocket shed, lifeboat men, rocket equipment, rocket machine, rocket head, rocket launcher, rocket line, marine technology, william schermuly, line-firing pistol, line throwing gun, schermuly pistol, pistol rocket apparatus, beach rescue set, traveller, block, running block, pulley, hawser, faking, faking box, faked line, rescue boat, lifeboat, lady bay, warrnambool harbour, port of warrnambool, tramway jetty, volunteer lifesavers, volunteer crew, breakwater, lifeboat warrnambool, rocket rescue method, rocket rescue apparatus, captain manby, mortar, henry trengrouse, sky rocket, john dennett, shore to ship, colonel boxer, two-stage rocket, italian hemp, quadrant, protractor, schermuly, line-throwing pistol, line throwing cartridge, rocket apparatus rescue, stranded vessel, tally board, light line, whip line, endless whip, petticoat buoy, traveller chair, traveller block, her majesty’s coast guard, harbour board, line thrower, line throwing, beach cart, hand barrow, sand anchor, hawser cutter, life jacket, faking board, welsh hand barrow, rocket set -
Flagstaff Hill Maritime Museum and VillageFunctional object - Sculling Oar, Mid to late 19th century
... The history of man using wooden oars to propel a boat has a considerable record in marine archaeology going back many centuries. The item is significant for marine archaeology as it gives a snapshot into how a small row boat was powered using a wooden sculling oar. A method ...An oar is an implement used for water-borne propulsion. Oars have a flat blade at one end. Rowers grasp the oar at the other end. The difference between oars and paddles is that oars are used exclusively for rowing. In rowing the oar is connected to the vessel by means of a pivot point for the oar, either an oarlock, or a hole. The oar is placed in the pivot point with a short portion inside the vessel, and a much larger portion outside. The rower pulls on the short end of the oar, while the long end is in the water. By contrast, paddles, are held in both hands by the paddler, and are not attached to the vessel. Rowers generally face the stern of the vessel, reach towards the stern, and insert the blade of their oar in the water. As they lean back, towards the vessel's bow, the blade of their oars pivots in the oarlock, and the end in the water moves towards the stern, providing forward thrust. There also is another way of propelling a small craft it's called a sculling oar which is attached to the transom and used to propel a small vessels rather than using two oars as previously described. It is believed the subject item is just such an oar given it’s long blade associated with a sculling oar. For thousands of years vessels were powered either by sails, or by the mechanical work of rowers, or by paddlers. Some ancient vessels were propelled by both oars and sail, depending on the speed and direction of the wind. Wooden oars, with canoe-shaped pottery, dating from 5000–4500 BC have been discovered in a Hemudu culture site at Yuyao, Zhejiang, in modern China. The history of man using wooden oars to propel a boat has a considerable record in marine archaeology going back many centuries. The item is significant for marine archaeology as it gives a snapshot into how a small row boat was powered using a wooden sculling oar. A method of propelling a small boat still used today an example is the gondoliers in Venice using a sculling oar in a circular motion to propel his craft. Single sculling oar with long flat blade, two copper bands, on blade with rowlock fittingNoneflagstaff hill, warrnambool, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, boat oar, sculling oar, row boat -
Flagstaff Hill Maritime Museum and VillageEquipment - Hand Barrow, 1860s
... history and marine technology. Lifesaving has been an important part of the services performed from Warrnambool's very early days, supported by State and Local Government, and based on the methods and experience of Great Britain. ...This hand barrow, sometimes called a Welsh hand barrow, was used to transport a load of marine rescue equipment from the beach cart to the rescue site, particularly over hilly, uneven or rough terrain. Hand barrows were in common use in the 19th century. Saving lives in Warrnambool – The coastline of South West Victoria is the site of over 600 shipwrecks and many lost lives; even in Warrnambool’s Lady Bay there were around 16 known shipwrecks between 1850 and 1905, with eight lives lost. Victoria’s Government responded to the need for lifesaving equipment and, in 1858, the provision of rocket and mortar apparatus was approved for the lifeboat stations. In 1859 the first Government-built lifeboat arrived at Warrnambool Harbour and a shed was soon built for it on the Tramway Jetty, followed by a rocket house in 1864 to safely store the rocket rescue equipment. In 1878 the buildings were moved to the Breakwater (constructed from 1874-1890), and in 1910 the new Lifeboat Warrnambool arrived with its ‘self-righting’ design. For almost a hundred years the lifesaving and rescue crews, mostly local volunteers, trained regularly to rehearse and maintain their rescue skills. They were summoned when needed by alarms, gunshots, ringing bells and foghorns. In July 1873 a brass bell was erected at Flagstaff Hill specifically to call the rescue crew upon news of a shipwreck. Some crew members became local heroes but all served an important role. Rocket apparatus was used as recently as the 1950s. Rocket Rescue Method - Rocket rescue became the preferred lifesaving method of the rescue crews, being much safer that using a lifeboat in rough seas and poor conditions. The Government of Victoria adopted lifesaving methods based on Her Majesty’s Coast Guard in Great Britain. It authorised the first line-throwing rescue system in 1858. Captain Manby’s mortar powered a projectile connected to rope, invented in 1808. The equipment was updated to John Dennett’s 8-foot shaft and rocket method that had a longer range of about 250 yards. From the 1860s the breeches buoy and traveller block rocket rescue apparatus was in use. It was suspended on a hawser line and manually pulled to and from the distressed vessel carrying passengers and items. In the early 1870s Colonel Boxer’s rocket rescue method became the standard in Victoria. His two-stage rockets, charged by a gunpowder composition, could fire the line up to 500-600 yards, although 1000 yards range was possible. Boxer’s rocket carried the light line, which was faked, or coiled, in a particular way between pegs in a faking box to prevent twists and tangles when fired. The angle of firing the rocket to the vessel in distress was measured by a quadrant-type instrument on the side of the rocket machine. Decades later, in about 1920, Schermuly invented the line-throwing pistol that used a small cartridge to fire the rocket. . The British Board of Trade regularly published instructions for both the beach rescue crew and ship’s crew. It involved setting up the rocket launcher on shore at a particular angle, determined by the Head of the crew and measured by the quadrant, inserting a rocket that had a light-weight line threaded through its shaft, and then firing it across the stranded vessel, the line issuing freely from the faking board. A continuous whip line was then sent out to the ship’s crew, who hauled it in then followed the instructions – in four languages - on the attached tally board. The survivors would haul on the line to bring out the heavier, continuous whip line with a tail block connected to it. They then secured the block to the mast or other strong part the ship. The rescue crew on shore then hauled out a stronger hawser line, which the survivors fixed above the whip’s tail block. The hawser was then tightened by the crew pulling on it, or by using the hooked block on the shore end of the whip and attaching it to a sand anchor. The breeches buoy was attached to the traveller block on the hawser, and the shore crew then used the whip line to haul the breeches buoy to and from the vessel, rescuing the stranded crew one at a time. The rescue crew wore scarlet, numbered armbands and worked on a numerical rotation system, swapping members out to rest them. This hand barrow is significant for its connection with local history, maritime history and marine technology. Lifesaving has been an important part of the services performed from Warrnambool's very early days, supported by State and Local Government, and based on the methods and experience of Great Britain. Hundreds of shipwrecks along the coast are evidence of the rough weather and rugged coastline. Ordinary citizens, the Harbour employees, and the volunteer boat and rescue crew, saved lives in adverse circumstances. Some were recognised as heroes, others went unrecognised. In Lady Bay, Warrnambool, there were around 16 known shipwrecks between 1850 and 1905. Many lives were saved but tragically, eight lives were lost.Hand barrow; a transporting device carried between two people walking one in front of the other. A wooden ladder-like frame with two handles at each end, blue painted body with unpainted handles. Seven equal-length slats are joined at equal distance between two parallel poles, and two longer slats are attached diagonally between the first and last slats as a brace. flagstaff hill maritime museum and village, flagstaff hill, maritime museum, maritime village, warrnambool, great ocean road, lady bay, warrnambool harbour, port of warrnambool, tramway jetty, breakwater, shipwreck, life-saving, lifesaving, rescue crew, rescue, rocket rescue, rocket crew, lifeboat men, beach rescue, line rescue, rescue equipment, rocket firing equipment, rocket rescue equipment, maritime accidents, shipwreck victim, rocket equipment, marine technology, rescue boat, lifeboat, volunteer lifesavers, volunteer crew, life saving rescue crew, lifesaving rescue crew, rocket apparatus, rocket rescue method, shore to ship, rocket apparatus rescue, stranded vessel, line throwing mortar, mortar, rocket rescue apparatus, line thrower, line throwing, lifeboat warrnambool, hand barrow, manual transport, welsh hand barrow -
Flagstaff Hill Maritime Museum and VillageEquipment - Ship's Wheel, 1922
... history. This ship's wheel is significant because of its association with the REGINALD M. REGNIALD M was a coastal trading ketch from South Australia built in 1922. It is one of very few sailing coastal trading vessels still extant, and its flat bottom, single chine shape illustrates a very simple but robust method of construction, compared to other round bilged examples of trading vessels. ...This ship's wheel was hand-made from wood and metal using a recycled cart wheel. It originally belonged to the "Reginald M", a coastal trading ketch. ‘REGINALD M’ 1922 to 1975- The vessel “Reginald M” was a two-masted coastal ketch, owned and built by Mr Jack (John) Murch of Birkenhead, Port of Adelaide, South Australia. Its construction took approximately 6 months, and it launched at Largs Bay in 1922. The Reginald M’s purpose was to serve the coastal trade of South Australia, to carry cargo cheaply and efficiently. Some have said that the keel was, in fact, hewn from two telegraph poles! Its builder frequented all the salvage yards for materials and fittings. Reginald M had a very shallow draft and a flat bottom that enabled it to come close to shore and to sit high and dry at low tide or to be beached on sand. The flat bottom was also to make the ship able to skim over reefs. Wagons could load and unload direct from their sides. Its cargo included Guano, Barley, Wool, Horses, Cattle, Timber, Explosives, Potatoes, Shell Gritt and Gypsum. On April 9th 1931Reginald M weathered a large storm in St Vincent Gulf, SA. The vessel suffered great damage; the mast snapped, and the crew laboured for four hours to free it by chopping off the mast and rigging. The crew patched it up and slowly returned to Port Adelaide with only a portion of the insured cargo being damaged. The crew members at the time were owner Mr John H Murch of Wells Street, Largs Bay; Skipper Mr R Murch, John’s brother; Murray, son of Captain Murch; and Seaman John Smith. Reg Webb purchased Carribie Station, at Marion in the Warooka District, south of Adelaide, in 1921. He cleared the land and farmed sheep and grain. In 1923, he shipped his own wool and grain from Marion Bay, having first carted 300 bags of the barley grain, 12 bags at a time, along the unmade track to the jetty. A photograph donated to Flagstaff Hill, dating about 1929 - 1942, shows two men on the Reginald M, holding between them their fishing catch of a large hammer shark. The photograph is stamped “GRENFELL STUDIO PORT LINCOLN PRINT” and titled “hammer shark caught on Reginald Emm”. The donor’s family lived on the Your Peninsula and dispatched their grain from a chute at Gleeson’s Landing to the awaiting transport vessel. Reg knew the Murch Brothers from Port Adelaide. The brothers had been using their ketch, Reginald M, to ship Guano from the Islands, led by Captain Richard Murch. Reg approached them in 1934 about shipping grain from Marion Bay. The brothers visited the bay and thought it was an ideal place. They showed Reg where to stack his grain, and they measured up the cliffs. When Reg was ready, they brought down and installed a ninety-foot wooden chute. The bags of grain were individually pushed down the chute, landing in a waiting small boat, then rowed to Reginald M with 14 bags at a time. After 10 hours, Reginald M would have a load of 1300 bags of grain to ship to waiting ports. At one time, a wild storm destroyed the chute, so they built a stronger replacement chute. Reginald M engaged in the shipping of grain from there until 1938. In 1940, Able Seaman Allan H Lucas served on the Reginald M between September and December, being engaged and discharged from Port Adelaide. The ship’s Master, W S Murch, signed his Certificate of Discharge. It seems that at the Reginald M was used, at one time, as a Customs vessel, as one photograph in Flagstaff Hill’s collection shows “H.M.C. No. 3, Pt Adelaide” on the bow. In 1969, the last freight left Marion Bay on the ketch Reginald M carrying grain, wool, and explosives. In late 1970, the Mt. Lyell Mining and Railway Company bought the vessel to use as a barge to carry explosives. In 1972, the Navy League of Strahan, Tasmania, purchased it for use by the Strahan Sea Cadet Unit to use at Macquarie Harbour and renamed it T.S. Macquarie. However, this plan for the use of Reginald M did not happen. In 1974, Mr Andrew Rennie, of East Brighton, Melbourne, bought it for a similar purpose, paying $5,000 and donating a ‘Cadet of the Year’ trophy to the Sea Cadets. He sailed it from Strahan to Melbourne, planning to use it for pleasure sailing. Also, in 1975, Reginald M was bought by the Melbourne Ferry Company at auction. Later in 1975, Flagstaff Hill Maritime Museum bought the Reginald M for $20,000. It became a popular exhibit in the Village’s lake. In 2006, using funds from a $4,000 government grant, the restoration of the vessel continued. Flagstaff Hill Maritime Village’s Collection holds other artefacts associated with Reginald M. They include - Photographs of the Reginald M, including one photograph of it in Outer Harbour, S.A., dated 1947, with Skipper- R.F. Dale and Owner- John Murch. Another shows it docked at Port Adelaide, with the lettering H.M.C. No. 3 Pt ADEL (standing for His /Her Majesty’s Customs). There is a black and white photo of it at a wharf and another showing a person on board. - a lifebuoy, made of cork, with the inscription of “Pt Adelaide” on it. - Helm section, removed and replaced during restoration. - a bullet found in pieces of timber when Reginald M was restored in 1979 Reginald M was a much-loved exhibit at the Maritime Village, where many visitors enjoyed boarding and exploring a real ship with a long history. Sadly, the Reginald M was decommissioned in late 2016, due to the continuing prohibitive cost of maintenance and the risk to public safety. Components from the Reginald M are held in Flagstaff Hill's collection as a reminder of the Reginald M’s history. This ship's wheel is significant because of its association with the REGINALD M. REGNIALD M was a coastal trading ketch from South Australia built in 1922. It is one of very few sailing coastal trading vessels still extant, and its flat bottom, single chine shape illustrates a very simple but robust method of construction, compared to other round bilged examples of trading vessels. She is now listed on the Australian Register of Historic Vessels (ARHV Number: HV000562.)Ship’s wheel, also called a Helm, eight spoke design. Centre of wheel is handmade of wood and has iron rings around each side. The spokes are fitted into this wooden hub. The outer wheel has an iron ring on one side and sections of a wooden ring on the other. There are both original and modern bolt and screw fastenings. The wheel has remnants of black paint. This ship’s wheel was originally fitted to the ketch REGINALD M and removed during its restoration. flagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, ship's wheel, hand made ship's wheel, coastal trader, reginald m, ketch, john murch, ch murch, reg webb, carribie station, mt lyell copper company, queenstown navy league, andrew rennie, melbourne ferry company, r.f. dale -
Flagstaff Hill Maritime Museum and VillageBook - Portfolio, Newcraft Pulicity, The Line of Sail; Magnificent Clipper Ships, 1969
... method of production of the original images is over a century old. The Melbourne publisher of this portfolio book, Newcraft Publicity, describes the contents as follows-' Magnificent Clipper Ships: Clipper ships in the line of sail make the most romantic and spectacular pictorial chapter of marine history. ...method of production of the original images is over a century old. The Melbourne publisher of this portfolio book, Newcraft Publicity, describes the contents as follows-' Magnificent Clipper Ships: Clipper ships in the line of sail make the most romantic and spectacular pictorial chapter of marine history. ...These prints include large sailing ships that were also referred to as Clippers and Tall Ships. These ships were used to transport cargo and passengers across the world in the 19th century. They were powered purely by harnessing the wind. It could take three to four months to sail in this manner from England to Australia. On many occasions the ships were wrecked, often close to their destination, through errors of navigation. The method of production of the original images is over a century old. The Melbourne publisher of this portfolio book, Newcraft Publicity, describes the contents as follows-' Magnificent Clipper Ships: Clipper ships in the line of sail make the most romantic and spectacular pictorial chapter of marine history. This collection depicting early clippers and other types of sailing ships were originally fine engravings on wooden printing blocks used in newspapers a century ago. They were taken directly from the original newspaper prints, and reproduced in enamel inks to provide a choice of fine line prints suitable for framing. LIST OF PRINTS- The New Australian Clipper "BLUE JACKET" The Clipper Ship “CHRYSOLIER” The “GAUNTLET” Clipper Ship The New American Clipper “GREAT REPUBLIC” The Clipper Ship “GUIDING STAR” New Emigrant Ship “HESPERIDES” for the South Australian Line Capt. Beatson’s Expedition in search of Sir John Franklin – the “ISABEL” The Black Ball Line Clipper Ship “JAMES BAINES” The “MERCHANT PRINCE” – Australian Clipper The White Star Line Clipper Ship “MORNING LIGHT” The Aberdeen Clipper Built Barque “PHOENICIAN” New Australian Clipper Ship the “ROYAL FAMILY” The “SOVEREIGN OF THE SEAS” American Clipper The New Iron Clipper Built Ship “TAYLEUR” for Australia H.M. New Frigate “THETIS” The American Clipper Ship “WITCH OF THE WAVE” ABOUT THE PUBLISHER- The Newcraft Publicity was a Melbourne business that operated in the 1960s at 243 Collins Street, Melbourne.This portfolio book of clipper ship prints is historically significant as it shows an important part of Australia's history, It includes some of the shipping lines famous in the 19th century for transporting passengers and goods to Australia. The prints are also significant for their origin in the carved wooden blocks used a century ago for creating images for the newspapers of the time. Book is also significant from being one of a limited edition of books produced. There are copes in both the Victorian State Library and the National Library of Australia.The Line of Sail is a portfolio of sixteen fine line, black and white prints on paper. The subject is clipper ships. The covers are paper-covered card, coloured a strong blue with white line images and text. The image side of the pages has a sheen, the back is matt. Each print has a caption. The top of the book is stapled and bound with grey tape. Produced by Newcraft Publicity, Melbourne. Limited Edition - Copy Number 086. Stamped on front cover "086"flagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, lithographs, newscraft publicity, book, the line of sail, dlipper ships, tall shipos, sailing ships, wood block print, newspaper drawings, newcraft productions, newcraft melbourne, portfolio of clipper ships, limited edition, wooden engravings, magnificent clipper ships -
Flagstaff Hill Maritime Museum and VillageBook - Reference Book/History, Henry Smith Williams, The Historians History of the World Vol 12 set 1 - Edited by Henry Smith Williams L.L.D. Published by “The Times” 1908, 1908
... This gives the reader a "history of histories," showing how different eras interpreted these world-changing events. The significance of this volume and the series as a whole lies in its historiographical method. ...Henry Smith Williams’ “The Historians' History of the World” is a chronological and geographical "tapestry" of human events, these twenty five volumes occupy a very specific and prestigious place in historical research. This volume continues on with the history of France. The primary focus of Volume 12 is the continuation of the history of France from 1715 to 1815. This century is arguably the most trans formative in French history, and the volume meticulously documents the transition from absolute monarchy to revolutionary chaos and, finally, to the Napoleonic Empire.The Book is part of a 25 volume set with red cloth bindings and gold filigree design to rib.non-fictionHenry Smith Williams’ “The Historians' History of the World” is a chronological and geographical "tapestry" of human events, these twenty five volumes occupy a very specific and prestigious place in historical research. This volume continues on with the history of France. The primary focus of Volume 12 is the continuation of the history of France from 1715 to 1815. This century is arguably the most trans formative in French history, and the volume meticulously documents the transition from absolute monarchy to revolutionary chaos and, finally, to the Napoleonic Empire.flagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, the historians history of the world vol 12, book, henry smith williams l.l.d -
Flagstaff Hill Maritime Museum and VillageBook - Reference Book/History, Henry Smith Williams, The Historians History of the World Vol 13 set 1 - Edited by Henry Smith Williams L.L.D. Published by “The Times” 1908, 1908
... history of the Low Countries the Netherlands, exploring their struggle for independence and their development as a global maritime and economic power. While earlier volumes focus on ancient civilisations and the Middle Ages, Volume 13 captures the birth of modern European democracy characterised by historians as the “Modern Political Evolution.” Along with the volatile shifts in French governance that shaped the 19th-century political landscape. The significance of this volume and the series as a whole lies in its historiographical method ...Henry Smith Williams’ “The Historians' History of the World” is a chronological and geographical "tapestry" of human events, these twenty five volumes occupy a very specific and prestigious place in historical research. Volume 13 focuses primarily on the modern history of France and the Netherlands. It specifically covers, France (1815–1904.) This section picks up immediately after the fall of Napoleon l following the 1815 Battle of Waterloo.The Book is part of a 25 volume set with red cloth bindings and gold filigree design to rib.non-fictionHenry Smith Williams’ “The Historians' History of the World” is a chronological and geographical "tapestry" of human events, these twenty five volumes occupy a very specific and prestigious place in historical research. Volume 13 focuses primarily on the modern history of France and the Netherlands. It specifically covers, France (1815–1904.) This section picks up immediately after the fall of Napoleon l following the 1815 Battle of Waterloo.flagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, book, the historians history of the world vol 13 set 1 -
Flagstaff Hill Maritime Museum and VillageBook - Reference Book/History, Henry Smith Williams, The Historians History of the World Vol 14 set 1 - Edited by Henry Smith Williams L.L.D. Published by “The Times” 1908, 1908
... At this time, Germany's rapid rise as a naval and industrial rival to Britain made the contents of Volume 14 specifically the history of the Germanic Empires a matter of intense contemporary interest. The significance of this volume and the series as a whole lies in its historiographical method. ...Henry Smith Williams’ “The Historians' History of the World” is a chronological and geographical "tapestry" of human events, these twenty five volumes occupy a very specific and prestigious place in historical research. Volume 14 serves as a bridge between the late early-modern period and the height of the imperial era for two major European powers. It is titled "The Netherlands (concluded), The Germanic Empires."The Book is part of a 25 volume set with red cloth bindings and gold filigree design to rib.non-fictionHenry Smith Williams’ “The Historians' History of the World” is a chronological and geographical "tapestry" of human events, these twenty five volumes occupy a very specific and prestigious place in historical research. Volume 14 serves as a bridge between the late early-modern period and the height of the imperial era for two major European powers. It is titled "The Netherlands (concluded), The Germanic Empires."flagstaff hill, warrnambool, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, book, the historians history of the world vol 14 set 1, henry smith williams -
Flagstaff Hill Maritime Museum and VillageBook - Reference Book/History, Henry Smith Williams, The Historians History of the World Vol 19 set 1 - Edited by Henry Smith Williams L.L.D. Published by “The Times” 1908, 1908
... It connects the medieval history found in Volume 18 (England to 1485) to the revolutionary and imperial history found in Volume 20 (England 1642–1791). As with the rest of the set, its significance lies in Williams' "mosaic" method. ...Henry Smith Williams’ “The Historians' History of the World” is a chronological and geographical "tapestry" of human events, these twenty five volumes occupy a very specific and prestigious place in historical research. Volume 19 is a pivotal component of the series, focusing specifically on a trans-formative era of British history from 1485 to 1642 covering the history of England from the rise of the Tudor Dynasty to the eve of the English Civil War.The Book is part of a 25 volume set with red cloth bindings and gold filigree design to rib.non-fictionHenry Smith Williams’ “The Historians' History of the World” is a chronological and geographical "tapestry" of human events, these twenty five volumes occupy a very specific and prestigious place in historical research. Volume 19 is a pivotal component of the series, focusing specifically on a trans-formative era of British history from 1485 to 1642 covering the history of England from the rise of the Tudor Dynasty to the eve of the English Civil War.flagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, book, the historians history of the world vol 19 set 1, henry smith williams -
Flagstaff Hill Maritime Museum and VillageBook - Reference Book/History, Henry Smith Williams, The Historians History of the World Vol 22 set 1 - Edited by Henry Smith Williams L.L.D. Published by “The Times” 1908, 1908
... method, this volume is significant because it weaves together the writings of primary American historians like George Bancroft and Francis Parkman with the observations of foreign contemporaries, providing a balanced, multi-perspective view of American development. (For more information on the Pattison Collection and the Mechanics Institute visit) https://victoriancollections.net.au/items/5580c7e72162f114d8b758db flagstaff hill warrnambool shipwrecked-coast flagstaff-hill flagstaff-hill-maritime-museum maritime-museum shipwreck-coast flagstaff-hill-maritime-village book the historians history of the world vol 22 set 1 Henry Smith Williams’ “The Historians' History of the World” is a chronological and geographical "tapestry" of human events, these twenty five volumes occupy a very specific and prestigious place in historical research. ...Henry Smith Williams’ “The Historians' History of the World” is a chronological and geographical "tapestry" of human events, these twenty five volumes occupy a very specific and prestigious place in historical research. Volume 22 represents a critical pivot point in the series, shifting the focus away from the concentrated histories of Europe and the British Empire toward the "New World" and the rising power of the West.The Book is part of a 25 volume set with red cloth bindings and gold filigree design to rib.non-fictionHenry Smith Williams’ “The Historians' History of the World” is a chronological and geographical "tapestry" of human events, these twenty five volumes occupy a very specific and prestigious place in historical research. Volume 22 represents a critical pivot point in the series, shifting the focus away from the concentrated histories of Europe and the British Empire toward the "New World" and the rising power of the West.flagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, book, the historians history of the world vol 22 set 1 -
Flagstaff Hill Maritime Museum and VillageEquipment - Bosun's Chair, ca. 1922
... The bonus's chair is also significant because of its connection to the history of the vessel REGINALD M, the coastal trading ketch from South Australia built in 1922 and in existence until 2016. Its flat bottom, single chine shape illustrates a very simple but robust method of construction, compared to other round bilged examples of trading vessels. ...This Bosun's char was part of the equipment on the vessel 'Reginald M. It is typical of items included on board a vessel in the late 19th and early 20th century. The nautical word 'bosun' is an abbreviation of the word 'boatswain' who is the person responsible for the repair and maintenance of the vessel. It could be used when rigging the sails and for rescue at sea, along with a thick rope anchored on shore or a rope between ships. It could also be used to move passengers to and from a ship as well as cargo on, to and from the vessel. A bosun's chair is a simple piece of equipment made from a short plank of wood and a sturdy piece of rope. It looks a little like a child's swing but usually has a pulley system that allows the user to adjust the length of the hanging piece of rope, and in so-doing adjusts the height above the floor or ground or sea. In modern times a harness would also be worn by the bosun’s chair user for safety reasons. Bosun's chairs are also used by window cleaners, construction workers and painters. The bosun’s chair is sometimes just a short plank, or even a canvas sling. The REGINALD M - The vessel “Reginald M” was a two-masted coastal ketch, owned and built by Mr. Jack (John) Murch of Birkenhead, Port of Adelaide, South Australia. Its construction took approximately 6 months and it was launched at Largs Bay in 1922. The vessel had many owners and adventures over the years until it was purchased by Flagstaff Hill Maritime Museum & Village in 1975 from the Melbourne Ferry Company at auction. It was then used as an active display until 2016. Visitors could go aboard, turn the ship's wheel, go below deck and get the feel of the captain's quarters, sailors' quarters and the storage space available. The Reginald M was a popular exhibit for young and old, until 2016.This bosun's chair is significant for its connection to the maritime history. It has been used for rigging, painting, maintenance and importantly for life saving and safety. The bonus's chair is also significant because of its connection to the history of the vessel REGINALD M, the coastal trading ketch from South Australia built in 1922 and in existence until 2016. Its flat bottom, single chine shape illustrates a very simple but robust method of construction, compared to other round bilged examples of trading vessels. The Reginald M is listed on the Australian Register of Historic Vessels (ARHV Number: HV000562.)Bosun's chair; seat is a rectangular plank of wood with a hole drilled in each corner and three reinforcing wood lengths attached below the plank. The ends of two looped thick ropes have been threaded through the holes in the plank, crossed over then spliced together. The loops of rope above the plank have been tied with light rope. A roughly made wire hook is attached at the base of one length of rope. Top surface reveals indents where the bottom wooden pieces are joined to the top and some of the metal fixtures can be seen along the edge. There are remnants of white paint on the top.flagstaff hill, warrnambool, maritime village, maritime museum, flagstaff hill maritime museum & village, shipwreck coast, great ocean road, bosun's chair, bosuns chair, boatswains chair, rigging, maritime equipment, bosun's seat, life saving, marine technology, ship rigging -
Flagstaff Hill Maritime Museum and VillageEquipment - Traveller pulley block, 1860s
... history and marine technology. Lifesaving has been an important part of the services performed from Warrnambool's very early days, supported by State and Local Government, and based on the methods and experience of Great Britain. ...The life saving breeches buoy was attached to a traveller block such as this one. The assembly was sent from shore to ship and back to transport the stranded people and goods safely to shore. Saving lives in Warrnambool – The coastline of South West Victoria is the site of over 600 shipwrecks and many lost lives; even in Warrnambool’s Lady Bay there were around 16 known shipwrecks between 1850 and 1905, with eight lives lost. Victoria’s Government responded to the need for lifesaving equipment and, in 1858, the provision of rocket and mortar apparatus was approved for the lifeboat stations. In 1859 the first Government-built lifeboat arrived at Warrnambool Harbour and a shed was soon built for it on the Tramway Jetty, followed by a rocket house in 1864 to safely store the rocket rescue equipment. In 1878 the buildings were moved to the Breakwater (constructed from 1874-1890), and in 1910 the new Lifeboat Warrnambool arrived with its ‘self-righting’ design. For almost a hundred years the lifesaving and rescue crews, mostly local volunteers, trained regularly to rehearse and maintain their rescue skills. They were summoned when needed by alarms, gunshots, ringing bells and foghorns. In July 1873 a brass bell was erected at Flagstaff Hill specifically to call the rescue crew upon news of a shipwreck. Some crew members became local heroes but all served an important role. Rocket apparatus was used as recently as the 1950s. Rocket Rescue Method - Rocket rescue became the preferred lifesaving method of the rescue crews, being much safer that using a lifeboat in rough seas and poor conditions. The Government of Victoria adopted lifesaving methods based on Her Majesty’s Coast Guard in Great Britain. It authorised the first line-throwing rescue system in 1858. Captain Manby’s mortar powered a projectile connected to rope, invented in 1808. The equipment was updated to John Dennett’s 8-foot shaft and rocket method that had a longer range of about 250 yards. From the 1860s the breeches buoy and traveller block rocket rescue apparatus was in use. It was suspended on a hawser line and manually pulled to and from the distressed vessel carrying passengers and items. In the early 1870s Colonel Boxer’s rocket rescue method became the standard in Victoria. His two-stage rockets, charged by a gunpowder composition, could fire the line up to 500-600 yards, although 1000 yards range was possible. Boxer’s rocket carried the light line, which was faked, or coiled, in a particular way between pegs in a faking box to prevent twists and tangles when fired. The angle of firing the rocket to the vessel in distress was measured by a quadrant-type instrument on the side of the rocket machine. Decades later, in 1920, Schermuly invented the line-throwing pistol that used a small cartridge to fire the rocket. . The British Board of Trade regularly published instructions for both the beach rescue crew and ship’s crew. It involved setting up the rocket launcher on shore at a particular angle, determined by the Head of the crew and measured by the quadrant, inserting a rocket that had a light-weight line threaded through its shaft, and then firing it across the stranded vessel, the line issuing freely from the faking board. A continuous whip line was then sent out to the ship’s crew, who hauled it in then followed the instructions – in four languages - on the attached tally board. The survivors would haul on the line to bring out the heavier, continuous whip line with a tail block connected to it. They then secured the block to the mast or other strong part the ship. The rescue crew on shore then hauled out a stronger hawser line, which the survivors fixed above the whip’s tail block. The hawser was then tightened by the crew pulling on it, or by using the hooked block on the shore end of the whip and attaching it to a sand anchor. The breeches buoy was attached to the traveller block on the hawser, and the shore crew then used the whip line to haul the breeches buoy to and from the vessel, rescuing the stranded crew one at a time. The rescue crew wore scarlet, numbered armbands and worked on a numerical rotation system, swapping members out to rest them.This traveller block is significant for its connection with local history, maritime history and marine technology. Lifesaving has been an important part of the services performed from Warrnambool's very early days, supported by State and Local Government, and based on the methods and experience of Great Britain. Hundreds of shipwrecks along the coast are evidence of the rough weather and rugged coastline. Ordinary citizens, the Harbour employees, and the volunteer boat and rescue crew, saved lives in adverse circumstances. Some were recognised as heroes, others went unrecognised. In Lady Bay, Warrnambool, there were around 16 known shipwrecks between 1850 and 1905. Many lives were saved but tragically, eight lives were lost. Wood and brass pulley block or 'traveller', used in conjunction with the Breeches Buoy. The block has double brass inline sheaves and brass rollers on each cheek of the pulley. Each shell is scored for the strop. The thimble on the strop has a wooden slat attached for quick release of the Breeches Buoy. A portion of rope is connected.flagstaff hill maritime museum and village, flagstaff hill, maritime museum, maritime village, warrnambool, shipwreck, life-saving, lifesaving, rescue crew, rescue, rocket rescue, rocket crew, lifeboat men, beach rescue, line rescue, rescue equipment, rocket firing equipment, rocket rescue equipment, maritime accidents, shipwreck victim, rocket equipment, marine technology, rescue boat, lifeboat, volunteer lifesavers, volunteer crew, life saving rescue crew, lifesaving rescue crew, rocket apparatus, rocket rescue method, shore to ship, rocket apparatus rescue, stranded vessel, line throwing mortar, mortar, rocket rescue apparatus, line thrower, line throwing, lifeboat warrnambool, beach apparatus, breeches buoy, petticoat breeches, petticoat buoy, traveller chair, life jacket, traveller, traveller block, running block, block, pulley, hawser, faking, faking box, faked line, faking board, italian hemp, quadrant, protractor, tally board, light line, whip line, endless whip, beach cart, hand barrow, sand anchor, welsh hand barrow, her majesty’s coast guard, harbour board, government of victoria, harbour master, l.s.r.c., lsrc -
Flagstaff Hill Maritime Museum and VillageMachine - Diving Compressor, Siebe Gorman & Co. Ltd, 1880-1890
... history. These items are particularly important in understanding the evolution of diving equipment, with a special focus on their use in salvage operations before and throughout the Second World War. Manufactured by a company renowned for its inventions, development, and innovation in marine engineering, the equipment demonstrates the progression of technology in deep-sea diving. Early helmets and related items produced by this company remain highly sought after by collectors worldwide, highlighting their historical and technological value. The presence of these items within the Flagstaff Hill Maritime Museum allows for a unique insight into the working conditions and methods ...This compressor was part of the E.G. Ward Collection. It is connected to the diving suit and boots, also in our collection. Siebe Gorman & Company Ltd was a British company that developed diving equipment and breathing equipment and worked on commercial diving and marine salvage projects. The company advertised itself as 'Submarine Engineers'. It was founded by Augustus Siebe, a German-born British engineer chiefly known for his contributions to diving equipment. Siebe Gorman traded as an engineering firm for over 180 years, from 1819 to 1999. The early success of the business was due to its founder, the Prussian immigrant Christian 'Augustus' Siebe (1788-1872). For business reasons, he applied for and was granted British citizenship in 1856. He was a gifted engineer who was able to translate theoretical problems into practical, working products. During the industrial Victorian period, the business traded as 'A. Siebe's at 145 High Street, Holborn, London, but in 1828, new premises were acquired at 5 Denmark Street, Soho. The family firm produced a wide range of manufactured goods, including paper-making machinery, measuring machinery, water-pumps, refrigeration equipment and diving apparatus. Augustus Siebe specialised in submarine engineering early on, and the company gained a reputation for the manufacture of safe, reliable diving apparatus. Augustus Siebe is best remembered for the development and manufacture of the ‘closed’ Diving Dress based on the ideas of Charles and John Deane, George Edwards and Charles Pasley. Apart from some small modifications to valves and diver communications, the basic 12 bolt ‘closed’ diving dress remained relatively unchanged after the 1870s. Later company successes were also based on innovation, with new products that could be successfully developed and manufactured to high standards. This was largely attributed to the inventive nature, foresight, engineering and entrepreneurial skills of Robert Henry Davis (1870-1965). In 1882, RH Davis joined the company of 'Siebe & Gorman' as a young 11-year-old office boy, and he was to remain with the company until he died in 1965. Augustus Siebe retired in 1869 and handed over the company to a new partnership of Henry H. Siebe (1830-1885) and William A. O'Gorman (1834-1904). The new firm traded as 'Siebe & Gorman' (1870-1879) from premises in and around Mason Street, Westminster Bridge Road, Lambeth, London. The two partners soon recognised the potential of R.H. Davis, and in 1894, aged 24, he became General Manager of Siebe & Gorman. Davis increasingly ran the company until the surviving partner (W.A. Gorman) died in 1904. The firm was disposed of to the Vickers (armaments) family, and a new company, Siebe Gorman & Co. Ltd. (1905-1998) was formed. Under the chairmanship of Albert Vickers, R.H. Davis was kept on as Managing Director, and the company forged ahead. However, after WW1, the Great Depression caused manufacturing output and share prices to slump. In 1924, Robert Davis made a deal with the Vickers Board and acquired control of the company through majority shares. Under his leadership, the Siebe Gorman Company flourished, and in time, four of his sons also joined the firm. The company gained a worldwide reputation for the manufacture of diving apparatus, decompression and observation chambers, and safety breathing apparatus of all types for use on the land, in the air and under the sea (including mine rescue, tunnelling, aircraft, diving, submarine escape and in other hazardous environments). Close research and development links with the MOD (especially the Admiralty), also provided a lucrative outlet for the company's products. In 1932, Robert Davis was knighted by King George V, principally for his invention of the ‘Davis Submerged Escape Apparatus’ (D.S.E.A.). Siebe Gorman essentially remained a family firm from the beginning (under A Siebe) until it became a public company for the first time in 1952. However, following WW2, British manufacturing stagnated through stifled investment and post-war austerity, and there was little innovation. Siebe Gorman's fortunes began to decline as an ageing Sir Robert Davis failed to invest or change the company's business and management practices. In 1959, Siebe Gorman was acquired by the “Fairy Group” and the ailing Sir Robert was made Life President. Consequently, nothing changed, and the slow decline continued until Sir Robert's death in March 1965. Around 1960, Siebe Gorman acquired the diving apparatus manufacturer C E Heinke, and for a brief period, it manufactured some diving equipment under the combined name of Siebe Heinke. Around 1964, Mr E. 'Barry' Stephens was appointed as the new Managing Director to modernise Siebe Gorman. Changes were made, including a move to a new factory in Wales in 1975. The new company concentrated on firefighting breathing apparatus and escape equipment, and the move coincided with the loss of many of the older, traditional craft skills. Between 1985 and 1998, Siebe expanded through acquisitions, and several other companies were acquired. The Siebe Gorman (diving apparatus) company has therefore traded as A. Siebe (1819-1870); Siebe & Gorman (1870-1879); Siebe Gorman & Co (1880-1904); Siebe Gorman & Co. Ltd (1905-1998).The diving compressor, along with associated equipment in the Flagstaff Hill collection, represents a highly significant snapshot of marine history. These items are particularly important in understanding the evolution of diving equipment, with a special focus on their use in salvage operations before and throughout the Second World War. Manufactured by a company renowned for its inventions, development, and innovation in marine engineering, the equipment demonstrates the progression of technology in deep-sea diving. Early helmets and related items produced by this company remain highly sought after by collectors worldwide, highlighting their historical and technological value. The presence of these items within the Flagstaff Hill Maritime Museum allows for a unique insight into the working conditions and methods employed by divers. It also illustrates the considerable dangers they faced while performing such essential and hazardous work, underscoring the critical role played by these professionals in maritime history.A single cylinder divers' pump by Siebe Gorman & Co Ltd, London, eccentric hand cranked in brass, brass-mounted mahogany case with instructions to the underside of the lid, brass-covered pressure gauge and air outlet, brass maker's plaque to the front, water inlet and outlet to the rear, green-painted lifting rings. Machinery has some blue-painted areas on the metal. This compressor is part of the E.G. Ward Collection.Plate on the back 'WATER SUPPLY" "WATER OVERFLOW" "WATER DRAIN-IN" Pressure gauge dial "BOURDON'S PRESSURE GAUGE" STEBE GORMAN & CO. LONDON", "LBS PRESSURE" "FEET OF SALT WATER" Plate on the front " PATENT, Siebe Gorman & Co Ltd Submarine Engineers" below emblem (Lion, Crown, Horse)flagstaff hill, warrnambool, flagstaff-hill, maritime-museum, diving compressor, london, siebe gorman & co ltd, marine technology, life saving, deep sea diving, maritime museum, maritime village, manine history, maritime history, marine engineers, marine diving, deep-sea diving, e g ward, vintage diving compressor, e. g. ward, e.g. ward, edward ward, ted ward -
Flagstaff Hill Maritime Museum and VillageFunctional object - Diving Suit, boots and weight, Early-to-mid 20th century
... history. These items are particularly important in understanding the evolution of diving equipment, with a special focus on their use in salvage operations before and throughout the Second World War. Manufactured by a company renowned for its inventions, development, and innovation in marine engineering, the equipment demonstrates the progression of technology in deep-sea diving. Early helmets and related items produced by this company remain highly sought after by collectors worldwide, highlighting their historical and technological value. The presence of these items within the Flagstaff Hill Maritime Museum allows for a unique insight into the working conditions and methods ...This diving suit with helmet, boots and weight is part of the E. G.Ward collection, along with the diving compressor and a photograph of a diver in this equipment. Siebe Gorman & Company Ltd was a British company that developed diving equipment and breathing equipment and worked on commercial diving and marine salvage projects. The company advertised itself as 'Submarine Engineers'. It was founded by Augustus Siebe, a German-born British engineer chiefly known for his contributions to diving equipment. Siebe Gorman traded as an engineering firm for over 180 years from 1819 to 1999. The early success of the business was due to its founder, the Prussian immigrant Christian 'Augustus' Siebe (1788-1872). For business reasons, he applied for and was granted British citizenship in 1856. He was a gifted engineer who was able to translate theoretical problems into practical, working products. During the industrial Victorian period, the business traded as 'A. Siebe' at 145 High Street Holborn London, but in 1828 new premises were acquired at 5 Denmark Street, Soho. The family firm produced a wide range of manufactured goods including paper-making machinery, measuring machinery, water pumps, refrigeration equipment and diving apparatus. Augustus Siebe specialised in submarine engineering early on and the company gained a reputation for the manufacture of safe, reliable diving apparatus. Augustus Siebe is best remembered for the development and manufacture of the ‘closed’ Diving Dress based on the ideas of Charles and John Deane, George Edwards and Charles Pasley. Apart from some small modifications to valves and diver communications, the basic 12-bolt ‘closed’ diving dress remained relatively unchanged after the 1870s. Later company successes were also based on innovation, with new products that could be successfully developed and manufactured to high standards. This was largely attributed to the inventive nature, foresight, engineering and entrepreneurial skills of Robert Henry Davis (1870-1965). In 1882, RH Davis joined the company of 'Siebe & Gorman' as a young 11-year-old office boy and he was to remain with the company until he died in 1965. Augustus Siebe retired in 1869 and handed over the company to a new partnership of Henry H. Siebe (1830-1885) and William A. O'Gorman (1834-1904). The new firm traded as 'Siebe & Gorman' (1870-1879) from premises in and around Mason Street, Westminster Bridge Road, Lambeth, London. The two partners soon recognised the potential of R.H. Davis and in 1894, aged 24, he became General Manager of Siebe & Gorman. Davis increasingly ran the company until the surviving partner (W.A. Gorman) died in 1904. The firm was disposed of to the Vickers (armaments) family and a new company 'Siebe Gorman & Co. Ltd.' (1905-1998) was formed. Under the chairmanship of Albert Vickers, R.H. Davis was kept on as Managing Director, and the company forged ahead. However, after WW1, the Great Depression caused manufacturing output and share prices to slump. In 1924 Robert Davis made a deal with the Vickers Board and acquired control of the company through majority shares. Under his leadership, the Siebe Gorman Company flourished and within time, four of his sons also joined the firm. The company gained a worldwide reputation for the manufacture of diving apparatus, decompression and observation chambers, and safety breathing apparatus of all types for use on the land, in the air and under the sea (including mine rescue, tunnelling, aircraft, diving, submarine escape and in other hazardous environments). Close research and development links with the MOD (especially the Admiralty), also provided a lucrative outlet for the company products. In 1932, Robert Davis was knighted by King George V, principally for his invention of the ‘Davis Submerged Escape Apparatus’ (D.S.E.A.). Siebe Gorman essentially remained a family firm from the beginning (under A.Siebe) until it became a public company for the first time in 1952. However, following WW2, British manufacturing stagnated through stifled investment and post-war austerity, and there was little innovation. Siebe Gorman fortunes began to decline as an ageing Sir Robert Davis failed to invest, or change the company business and management practices. In 1959, Siebe Gorman was acquired by the “Fairy Group” and the ailing Sir Robert was made Life President. Consequently, nothing changed and the slow decline continued until Sir Robert's death in March 1965. Around 1960, Siebe Gorman acquired the diving apparatus manufacturer C E Heinke, and for a brief period, it manufactured some diving equipment under the combined name of Siebe Heinke. Around 1964, Mr E. 'Barry' Stephens was appointed as the new Managing Director to modernise Siebe Gorman. Changes were made, including a move to a new factory in Wales in 1975. The new company concentrated on fire-fighting breathing apparatus and escape equipment, and the move coincided with the loss of many of the older, traditional craft skills. Between 1985 and 1998, Siebe expanded through acquisitions, and several other companies were acquired. The Siebe Gorman (diving apparatus) company has therefore traded as A. Siebe (1819-1870); Siebe & Gorman (1870-1879); Siebe Gorman & Co (1880-1904); Siebe Gorman & Co. Ltd (1905-1998).The diving suit, helmet, boots, and weights, along with associated equipment in the Flagstaff Hill collection, represent a highly significant snapshot of marine history. These items are particularly important in understanding the evolution of diving equipment, with a special focus on their use in salvage operations before and throughout the Second World War. Manufactured by a company renowned for its inventions, development, and innovation in marine engineering, the equipment demonstrates the progression of technology in deep-sea diving. Early helmets and related items produced by this company remain highly sought after by collectors worldwide, highlighting their historical and technological value. The presence of these items within the Flagstaff Hill Maritime Museum allows for a unique insight into the working conditions and methods employed by divers. It also illustrates the considerable dangers they faced while performing such essential and hazardous work, underscoring the critical role played by these professionals in maritime history.Diving suit including helmet, boots and a weight. Diving suit is made of canvas with knitted cuffs. The helmet is metal. The boots have a thick sole and thick leather upper that is held on with leather straps and buckles. The toe of the boot is heavy metal. The weight is worn next to the trunk of the diver and it has an inscription to mark the front. It is worn with straps and buckles holding it in place. Royal Navy Admiralty Pattern 6 bolt No 3 light Siebe Gorman light diving helmet circa 1960, used by the Royal Navy before and after World War 2. This equipment is part of the E. G. Ward Collection."Siebe Gorman & Co Ltd Marine Engineers London. Patent" with "E G Ward" on front and back plate. On weight "FRONT"flagstaff hill, warrnambool, diving suit, siebe gorman and co ltd., siebe gorman and co ltd marine engineers london, marine engineers, diving helmet, diving boots, diving weight, marine diving, maritimemuseum, maritime village, maritime history, marine technology, life saving, deep sea diving, maritime museum, siebe gorman and co ltd., siebe gorman and co ltd, london, deep-sea diving, e. g. ward, e g ward, e.g. ward, edward ward, ted ward -
Flagstaff Hill Maritime Museum and VillagePrint - Lithograph, sea rescue, R.N. Duffield, Australian cruiser “MELBOURNE” (Tons 5600) rescuing crew of sinking four-masted schooner “HELEN B. STERLING” of Halifax NS Canada, Tons 1343 in a gale in the Pacific Ocean, 19-11-1924
... It includes an example of the line and breeches buoy method used to save lives at sea from the 1860s and into the 20th century. It reflects a time in our history when sail and steam ships cruised the world’s seas together, the former trading with a cargo of coal from Newcastle, the latter defending our country in World War I. ...This framed lithograph print in watercolour and gouache was produced on November 19th, 1924, by 20th-century marine artist, Mr R.N. Duffield. It depicts the event of a sea rescue that took place two years earlier. The framer was A.L. Frith of Footscray, Melbourne, who actively advertised from 1933 to 1935. The now disbanded Shiplovers' Society of Victoria (1930-2018) donated the print, and it seems likely that this print was framed for that organisation. This graphic image shows the conditions in which the rescue from the wrecked Helen B. Sterling happened. Captain George Harris was master of the American-owned, four-masted windjammer. His wife Edith and their ten-year-old son Leslie were on board, along with a crew of fifteen seamen. The ship set off from Newcastle, NSW, on January 5th, 1922, loaded with a cargo of coal to deliver to the Society Islands and on to San Francisco. Young Leslie later wrote a lively school composition for his teacher about his experiences on board the Helen B Sterling. He tells of a fire that broke out the day after they departed and burned a hole in a beam. Then another troublesome time on the 9th, when a strong gale blew a sail off the ship. Finally, he tells of the highlight of his voyage when, on the 18th January, the ship was right in the path of a strong cyclone, which broke the mainmast. Huge waves crashed over both sides of the deck, meeting in the middle, and the ship began to sink. The rescue from the wreck was an exciting time for the young boy, and even more so when one of his cats survived after being carefully wrapped in a pillowcase and thrown down from the ship for the boy. Reporters later wrote about Leslie’s comments, “... what had grieved him most was the thought that he might never see his two little sisters again”. Captain Harris said in a published statement, “… the gale was the worst he had met in his 12 years’ experience at sea. All went well for the first week. We then encountered a strong blow from the south-east. We tried the gasoline pump, but the engine broke down, and we had to do the pumping by hand. We at once shortened sail, but the sea increased in fury to such an extent that men were washed from the pumps. I was below at 5:30 on Sunday morning [January 22nd, 1922] when the main mast went over the side, … I at once sent out SOS signals, and got word that HMAS Melbourne was coming to our assistance. I had made a mistake with regard to our position, but did not know it until 11:30 o’clock, when I sent out the correct location. This was picked up by the Melbourne and I received the following reply: “We will reach you about 2 am. Keep a good heart. The Melbourne will do all she can.” Our ship was practically awash when we were taken off.” (Ref: the ‘Helen B. Sterling Disaster’, Maitland Weekly Mercury, NSW, 4-2-1922.) Officers from the Royal Australian Navy, Captain Henry J Feakes (later Rear-Admiral) and Commander Wilfrid Ward Hunt, were on board the light cruiser, HMAS Melbourne (1913-1928), when it left Sydney for New Zealand. After the SOS was received, the ship sped at full steam towards the sinking Helen B. Sterling. They found the vessel at about midnight and shone bright search lights on the distressed ship to illuminate the desperate scene. The Melbourne was unable to move close to the schooner, so sixteen seamen, including Commander Hunt, volunteered to man the Melbourne’s lifesaving 12-oared cutter. They rowed the sea boat with great urgency towards the victims of the sinking ship, keen to save lives no matter what the conditions. When the cutter was close to the Sterling, a line was secured between the Sterling and the cutter. The weary, waterlogged and anxious men on board could be rescued, one at a time, in the breeches buoy equipment, which looked like canvas shorts with a lifesaving ring in the waistband. The victims were hauled along the line and pulled aboard by many willing hands. All eighteen crew and passengers were saved, including Captain Harris and his family. The seamen of the Melbourne received a heroes’ welcome when they arrived in New Zealand. The grateful survivors were taken to Auckland, where they received the care and comfort they needed. Melbourne’s Lord Mayor, Cr. Swanston, on behalf of the citizens of Melbourne, formally recognised the heroic rescue efforts of the seamen of the HMAS Melbourne on March 2nd, 1922, at a special presentation. Two large flags, a White Ensign and an Australian “Jack" Flag, were presented to the Captain of HMAS Melbourne, and souvenirs were awarded to the sea boat’s crew and its Commander, Wilfred Ward Hunt. Commander Hunt was also presented with an original watercolour depicting the heroic rescue from the wreck of the Helen B. Sterling, painted just after the event by renowned marine artist Arthur V Gregory (1867-1957), and he received a silver cigarette case bearing the City’s coat of arms and the inscription, "To Commander Ward Hunt from the Citizens of Melbourne as a memento of the rescue of the crew of Helen B. Stirling by H.M.A.S. Melbourne, on 23.1.22". Both the painting and the cigarette case are now treasured items inherited by his grandson; a reminder of “… a very fine naval gentleman who believed in leading by example." R.N. DUFFIELD: - The Lithograph print in our collection by 20th-century English artist R.N. Duffield is dated Nov. 19, 1924. It is very similar to, and possibly created from, the original A V Gregory watercolour presented to Commander Hunt and dated 1922. Mr R.N. Duffield has art works in the Yarmouth Museums, Norfolk Museums Collection; “Orient Liner Otranto …,” and "Convoy of six ships at sea", both painted in watercolour and gouache during the 1940s. Some of his other works, also painted in watercolour and gouache, have been advertised for sale on Internet sites. Some details differ between the original A.V. Gregory and this Lithograph Print: - -the words on the bow on the original watercolour are “Helen B. Sterling, Blain”, which is in Washington, USA, where the Sterling Shipping Company was registered from around 1919; the words on the print are “Helen B. Sterling, Halifax, N S”, for Nova Scotia, Canada, which is the hometown of Sterling Shipping Company founder’s wife, Helen B Sterling. -The watercolour is coloured and has fine details; the print is monochrome - The A V Gregory signed the watercolour in 1922, on the lower left; the print is signed with the Lithographer’s name on the lower right; “R N Duffield, Nov. 19. 1924” ARTHUR VICTOR GREGORY (1867-1957): - A.V. Gregory is a renowned marine artist who worked in watercolour and gouache. He painted actively between 1899 and 1932, creating over 3o0 works. South Melbourne, Victoria, was where he lived and worked. This Lithograph print is significant in that it depicts the rescuing of the passengers and crew of the schooner “Helen B Stirling”. At the time this was a significant event that made most Australian and New Zealand papers because of the involvement of the Australian cruiser “Melbourne”. The image demonstrates the perilous conditions experienced by seafarers. It includes an example of the line and breeches buoy method used to save lives at sea from the 1860s and into the 20th century. It reflects a time in our history when sail and steam ships cruised the world’s seas together, the former trading with a cargo of coal from Newcastle, the latter defending our country in World War I. The print is part of Flagstaff Hill Maritime Museum’s Collection of maritime artworks that depict famous events, vessels and locations, showing the evolution of sea craft, and aiding the interpretation of our maritime history. The Lithograph print is behind glass in a black painted timber frame and mounted under a cream matte. The vivid image depicts a sea rescue in progress. The night scene is illuminated by a light beaming from a steamship, the Cruiser HMAS Melbourne. It reveals figures on the deck of a sinking sailing ship, the schooner Helen B. Sterling, as foaming waves roll across it. The stricken ship has a broken main mast, and a sail has been detached. A small figure is floating in the choppy sea, secured in a breeches buoy that is attached to a rescue line between a lifesaving cutter and the sailing ship. The crewmen in the cutter are ready to haul the shipwrecked victim aboard, while the figures on the foundering ‘Sterling’ watch them. The print’s paper-covered wooden backboard is attached to the frame with small tacks. A metal hanging wire is secured to two dissimilar eyelet screws. Inscriptions include text on the bow of the sinking vessel, a handwritten title below the picture, and a handwritten name in the print’s lower right corner. On the reverse are two oval, black ink stamps and a round cream label with printed text. The hand-painted print was reproduced from a lithograph, signed in the lower right, by R.N. Duffield of England, on November 19th, 1924. A Frith of Footscray, Melbourne framed it. Painted on the ship’s bow: “HELEN B. STERLING / HALIFAX N S” [Nova Scotia, Canada] Handwritten below the print: “AUSTRALIAN CRUISER “MEMBOURNE” (Tons 5600) rescuing crew of sinking four-masted schooner “HELEN B. STERLING” of Halifax NS Canada, Tons 1343 in a gale in the Pacific Ocean.” Handwritten on lower right: “R.N. DUFFIELD / Nov. 19. 1924” (underlined) On paper label: “Phone: / Footscray 398 [some of the text has torn off] / “A. FRITH / PICTURE FRAMER / Manufacturer / 17 Paisley Street / Footscray.“ On both oval stamps: “SHIPLOVERS SOCIETY OF VICTORIA / LIBRARY” flagstaff hill, flagstaff hill maritime museum and village, warrnambool, maritime museum, maritime village, great ocean road, shipwreck coast, lithograph, lithograph print, reproduction print, helen b. sterling, the sterling, american owned schooner, halifax, halifax n s, halifax nova scotia, nova scotia, halifax n s canada, schooner, windjammer, sailing ship, four-masted ship, captain george harris, george harris, edith harris, leslie harris, sterling shipping line, hmas melbourne, hmas melbourne (1), cruiser hmas melbourne, the melbourne, australian cruiser, captain henry j feakes, commander wilfred ward hunt, sinking ship, shipwreck, sea rescue, gale, cyclone, 1922 rescue, shipwreck rescue, breeches buoy, line rescue, rescue line, lifesaving, cutter, cutter melbourne, sea boat, lifesaving crew, 12-oar cutter, shipwreck victim, r.n. duffield, marine artist, nov. 19. 1924, 20th century artist, a frith, footscray picture framer, shiplovers’ society of victoria, shiplovers’ society library, watercolour, a v gregory, arthur victor gregory, melbourne artist, newcastle coal, newcastle nsw, society islands, san fracisco, aukland new zealand, school composition, ship’s cat, sos signal, lord mayor cr. swanston, heroes, cigarette case -
Flagstaff Hill Maritime Museum and VillageContainer - Case, Early 20th century
... history and marine technology. Lifesaving has been an important part of the services performed from Warrnambool's very early days, supported by State and Local Government, and based on the methods and experience of Great Britain. ...This small case is lined with a metal insert and shows remnants of a carry strap. It could have been used for storing and carrying fuses or cartridges for the life saving Rocket Launcher machine. The protective metal insert would help keep the contents dry or cool and protect from flame. It is part of the collection of rescue equipment in the Rocket House used by the life saving rescue crew. Saving lives in Warrnambool – The coastline of South West Victoria is the site of over 600 shipwrecks and many lost lives; even in Warrnambool’s Lady Bay there were around 16 known shipwrecks between 1850 and 1905, with eight lives lost. Victoria’s Government responded to the need for lifesaving equipment and, in 1858, the provision of rocket and mortar apparatus was approved for the lifeboat stations. In 1859 the first Government-built lifeboat arrived at Warrnambool Harbour and a shed was soon built for it on the Tramway Jetty, followed by a rocket house in 1864 to safely store the rocket rescue equipment. In 1878 the buildings were moved to the Breakwater (constructed from 1874-1890), and in 1910 the new Lifeboat Warrnambool arrived with its ‘self-righting’ design. For almost a hundred years the lifesaving and rescue crews, mostly local volunteers, trained regularly to rehearse and maintain their rescue skills. They were summoned when needed by alarms, gunshots, ringing bells and foghorns. In July 1873 a brass bell was erected at Flagstaff Hill specifically to call the rescue crew upon news of a shipwreck. Some crew members became local heroes but all served an important role. Rocket apparatus was used as recently as the 1950s. Rocket Rescue Method - Rocket rescue became the preferred lifesaving method of the rescue crews, being much safer that using a lifeboat in rough seas and poor conditions. The Government of Victoria adopted lifesaving methods based on Her Majesty’s Coast Guard in Great Britain. It authorised the first line-throwing rescue system in 1858. Captain Manby’s mortar powered a projectile connected to rope, invented in 1808. The equipment was updated to John Dennett’s 8-foot shaft and rocket method that had a longer range of about 250 yards. From the 1860s the breeches buoy and traveller block rocket rescue apparatus was in use. It was suspended on a hawser line and manually pulled to and from the distressed vessel carrying passengers and items. In the early 1870s Colonel Boxer’s rocket rescue method became the standard in Victoria. His two-stage rockets, charged by a gunpowder composition, could fire the line up to 500-600 yards, although 1000 yards range was possible. Boxer’s rocket carried the light line, which was faked, or coiled, in a particular way between pegs in a faking box to prevent twists and tangles when fired. The angle of firing the rocket to the vessel in distress was measured by a quadrant-type instrument on the side of the rocket machine. Decades later, in 1920, Schermuly invented the line-throwing pistol that used a small cartridge to fire the rocket. . The British Board of Trade regularly published instructions for both the beach rescue crew and ship’s crew. It involved setting up the rocket launcher on shore at a particular angle, determined by the Head of the crew and measured by the quadrant, inserting a rocket that had a light-weight line threaded through its shaft, and then firing it across the stranded vessel, the line issuing freely from the faking board. A continuous whip line was then sent out to the ship’s crew, who hauled it in then followed the instructions – in four languages - on the attached tally board. The survivors would haul on the line to bring out the heavier, continuous whip line with a tail block connected to it. They then secured the block to the mast or other strong part the ship. The rescue crew on shore then hauled out a stronger hawser line, which the survivors fixed above the whip’s tail block. The hawser was then tightened by the crew pulling on it, or by using the hooked block on the shore end of the whip and attaching it to a sand anchor. The breeches buoy was attached to the traveller block on the hawser, and the shore crew then used the whip line to haul the breeches buoy to and from the vessel, rescuing the stranded crew one at a time. The rescue crew wore scarlet, numbered armbands and worked on a numerical rotation system, swapping members out to rest them. This small leather carrying case is significant for its connection with the rocket rescue equipment, local history, maritime history and marine technology. Lifesaving has been an important part of the services performed from Warrnambool's very early days, supported by State and Local Government, and based on the methods and experience of Great Britain. Hundreds of shipwrecks along the coast are evidence of the rough weather and rugged coastline. Ordinary citizens, the Harbour employees, and the volunteer boat and rescue crew, saved lives in adverse circumstances. Some were recognised as heroes, others went unrecognised. In Lady Bay, Warrnambool, there were around 16 known shipwrecks between 1850 and 1905. Many lives were saved but tragically, eight lives were lost.Leather case, brown with contrasting stitching, protective metal insert divided into two compartments. Rectangular shape. Roller buckle on front with remnants of the matching strap. Also remnants of a leather strap on the side, possibly a shoulder strap.flagstaff hill maritime museum and village, flagstaff hill, maritime museum, maritime village, warrnambool, great ocean road, shipwreck, life-saving, lifesaving, rescue crew, rescue, rocket rescue, rocket crew, lifeboat men, beach rescue, line rescue, rescue equipment, rocket firing equipment, rocket rescue equipment, maritime accidents, shipwreck victim, rocket equipment, marine technology, rescue boat, lifeboat, volunteer lifesavers, volunteer crew, life saving rescue crew, lifesaving rescue crew, rocket apparatus, rocket rescue method, shore to ship, rocket apparatus rescue, stranded vessel, line throwing mortar, mortar, rocket rescue apparatus, line thrower, line throwing, line-firing pistol, line throwing gun, schermuly pistol, pistol rocket apparatus, line throwing cartridge, l.s.r.c., lsrc, leather case, cartridge case, fuse case, ammunition case -
Federation University Historical CollectionBook, Historic Ornament Parts I and II. Ballarat Technical Art School Art History Books, 1931, 1931
... Students studied the influences of history, geography, culture and climate on ornamental aesthetics, including the tools, materials and methods applied to decorative objects, interior design and architecture....Students studied the influences of history, geography, culture and climate on ornamental aesthetics, including the tools, materials and methods applied to decorative objects, interior design and architecture. ballarat school of mines ballarat technical art school art history edith lawn edith curnow val lawn val d'angri curnow lawn ornament costume. ballarat technical art school library artists workbook journal Historic Ornament University Women Ballarat School of Mines Old Girls Association Two books containing student notes and drawing relating to courses at the Ballarat techncial Art School in 1931. ...Edith CURNOW (1913–2003) Ballarat | Australia Edith Gertrude Curnow undertook Industrial Art teacher training at the Ballarat Technical Art School, with a five-year Senior Technical Scholarship, between 1926 and 1931. She taught for a time before marrying compositor James Lawn in 1937. She reportedly continued to teach at the Ballarat Technical Art School as Edith Lawn. She retired in 1972 at which time she was the Lecturer in Charge of Craft Edith Lawn was a member of inaugural Ballarat School of Mines Old Girls Association, and served as first Press Correspondent. Her daughter, Valda Lawn (later D'Angri) also attended and taught at the School. One of the subjects Curnow studied was Historic Ornament. This subject spanned time and space to inform and inspire designers. Students studied the influences of history, geography, culture and climate on ornamental aesthetics, including the tools, materials and methods applied to decorative objects, interior design and architecture.Two books containing student notes and drawing relating to courses at the Ballarat techncial Art School in 1931. The work was undertaken by Edith Curnow. .1) - Foolscap red covered book on Historic Ornament. Includes History of Ornament, Egyptian Ornament, Assyrian Ornament; Greek Ornament, Roman Ornament, Pompeian Ornament, Byzantine, Romanesque Ornament, Norman, Decorated Gothic, Perpendicular Gothic, Renaissance. .2) Green quarto book on Historic Ornament Part 2: Costume. The work includes Egyptian Costume, Greek Costume, Roman Costume, Richard I, Crusades, Edward III, Charles I, Charles II, George II.ballarat school of mines, ballarat technical art school, art history, edith lawn, edith curnow, val lawn, val d'angri, curnow, lawn, ornament, costume., ballarat technical art school library, artists workbook, journal, historic ornament, university women, ballarat school of mines old girls association -
Flagstaff Hill Maritime Museum and VillageUniform - Arm Bands, c. 1860s
... history and marine technology. Lifesaving has been an important part of the services performed from Warrnambool's very early days, supported by State and Local Government, and based on the methods and experience of Great Britain. ...Members of the Life Saving Rescue Crew would wear scarlet arm bands such as these as part of their uniform, with each member having a different number. The crew would work as a team to haul in the victims of the shipwreck. The leader of the crew would call out one or several member's numbers to give them a break during the rescue, while other members took their place. All members would then be relieved at some time during the rescue. Saving lives in Warrnambool – The coastline of South West Victoria is the site of over 600 shipwrecks and many lost lives; even in Warrnambool’s Lady Bay there were around 16 known shipwrecks between 1850 and 1905, with eight lives lost. Victoria’s Government responded to the need for lifesaving equipment and, in 1858, the provision of rocket and mortar apparatus was approved for the lifeboat stations. In 1859 the first Government-built lifeboat arrived at Warrnambool Harbour and a shed was soon built for it on the Tramway Jetty, followed by a rocket house in 1864 to safely store the rocket rescue equipment. In 1878 the buildings were moved to the Breakwater (constructed from 1874-1890), and in 1910 the new Lifeboat Warrnambool arrived with its ‘self-righting’ design. For almost a hundred years the lifesaving and rescue crews, mostly local volunteers, trained regularly to rehearse and maintain their rescue skills. They were summoned when needed by alarms, gunshots, ringing bells and foghorns. In July 1873 a brass bell was erected at Flagstaff Hill specifically to call the rescue crew upon news of a shipwreck. Some crew members became local heroes but all served an important role. Rocket apparatus was used as recently as the 1950s. Rocket Rescue Method - Rocket rescue became the preferred lifesaving method of the rescue crews, being much safer that using a lifeboat in rough seas and poor conditions. The Government of Victoria adopted lifesaving methods based on Her Majesty’s Coast Guard in Great Britain. It authorised the first line-throwing rescue system in 1858. Captain Manby’s mortar powered a projectile connected to rope, invented in 1808. The equipment was updated to John Dennett’s 8-foot shaft and rocket method that had a longer range of about 250 yards. From the 1860s the breeches buoy and traveller block rocket rescue apparatus was in use. It was suspended on a hawser line and manually pulled to and from the distressed vessel carrying passengers and items. In the early 1870s Colonel Boxer’s rocket rescue method became the standard in Victoria. His two-stage rockets, charged by a gunpowder composition, could fire the line up to 500-600 yards, although 1000 yards range was possible. Boxer’s rocket carried the light line, which was faked, or coiled, in a particular way between pegs in a faking box to prevent twists and tangles when fired. The angle of firing the rocket to the vessel in distress was measured by a quadrant-type instrument on the side of the rocket machine. Decades later, in about 1920, Schermuly invented the line-throwing pistol that used a small cartridge to fire the rocket. . The British Board of Trade regularly published instructions for both the beach rescue crew and ship’s crew. It involved setting up the rocket launcher on shore at a particular angle, determined by the Head of the crew and measured by the quadrant, inserting a rocket that had a light-weight line threaded through its shaft, and then firing it across the stranded vessel, the line issuing freely from the faking board. A continuous whip line was then sent out to the ship’s crew, who hauled it in then followed the instructions – in four languages - on the attached tally board. The survivors would haul on the line to bring out the heavier, continuous whip line with a tail block connected to it. They then secured the block to the mast or other strong part the ship. The rescue crew on shore then hauled out a stronger hawser line, which the survivors fixed above the whip’s tail block. The hawser was then tightened by the crew pulling on it, or by using the hooked block on the shore end of the whip and attaching it to a sand anchor. The breeches buoy was attached to the traveller block on the hawser, and the shore crew then used the whip line to haul the breeches buoy to and from the vessel, rescuing the stranded crew one at a time. The rescue crew wore scarlet, numbered armbands and worked on a numerical rotation system, swapping members out to rest them. This set of scarlet arm bands is significant for its connection with local history, maritime history and marine technology. Lifesaving has been an important part of the services performed from Warrnambool's very early days, supported by State and Local Government, and based on the methods and experience of Great Britain. Hundreds of shipwrecks along the coast are evidence of the rough weather and rugged coastline. Ordinary citizens, the Harbour employees, and the volunteer boat and rescue crew, saved lives in adverse circumstances. Some were recognised as heroes, others went unrecognised. In Lady Bay, Warrnambool, there were around 16 known shipwrecks between 1850 and 1905. Many lives were saved but tragically, eight lives were lost.Arm bands; three scarlet flannel arm bands with black cotton backing and a metal buckle on one end. White cotton embroidery forms letters and numbers, with each arm band having a different number. Part of the uniform of the Life Saving and Rescue Crew.Embroidered on front "L.S. 1 R.C." "L.S. 8 R.C." "L.S. 13 R.C." flagstaff hill maritime museum and village, flagstaff hill, maritime museum, maritime village, warrnambool, great ocean road, lady bay, warrnambool harbour, port of warrnambool, tramway jetty, breakwater, shipwreck, life-saving, lifesaving, rescue crew, rescue, rocket rescue, rocket crew, lifeboat men, beach rescue, line rescue, rescue equipment, rocket firing equipment, rocket rescue equipment, maritime accidents, shipwreck victim, rocket equipment, marine technology, rescue boat, lifeboat, volunteer lifesavers, volunteer crew, life saving rescue crew, lifesaving rescue crew, rocket apparatus, rocket rescue method, shore to ship, rocket apparatus rescue, stranded vessel, line throwing mortar, mortar, rocket rescue apparatus, line thrower, line throwing, lifeboat warrnambool, arm band, armband, scarlet arm band, l.s.r.c., lsrc, red arm band -
Flagstaff Hill Maritime Museum and VillageContainer - Tea Tin, First half of 20th Century
... method they developed involved rolling iron plates using cylinders. This process enabled more uniform blank plates to be produced than was possible by just hammering the tin. https://www.shilohplastics.com.au/history...method they developed involved rolling iron plates using cylinders. This process enabled more uniform blank plates to be produced than was possible by just hammering the tin. https://www.shilohplastics.com.au/history ...The history of metal packaging began in Bohemia in the 1200s. Metal has been produced for a very long time. But the first metal used for packaging was tin. In particular, it was the process of tin plating that was invented in Bohemia. Before this no other metal was economically able to be used for packaging. Later, in 1667 Andrew Yarranton, and English engineer, and Ambrose Crowley brought the method to England. Here it was improved by ironmasters including Philip Foley. Then by 1697, John Hanbury had a rolling mill at Pontypool in South Wales. The method they developed involved rolling iron plates using cylinders. This process enabled more uniform blank plates to be produced than was possible by just hammering the tin. https://www.shilohplastics.com.au/history-of-metal-packaging/The use of tin to protect and store food and other items, revolutionised the world.Tin container painted yellow with printed crosses and circles,. The lid is labelled "Robur Cross Stitch Company" and "R" imprinted in the centre although the lid is badly corroded. ‘Cross – Stitch’ (printed green in small crosses and circles) followed by ‘Nett Weight ¾ lb. (printed beige in crosses and circles). Pure Blended Tea. Robur Tea Co Ltd’ flagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, robur tea co ltd, tea, tea caddy, tin, tin plating, food containers -
Flagstaff Hill Maritime Museum and VillageEquipment - Life Jacket, General Naval Supply G.N.S.), 1940
... history and marine technology. Lifesaving has been an important part of the services performed from Warrnambool's very early days, supported by State and Local Government, and based on the methods and experience of Great Britain. ...This life jacket was issued by the Australian Government's General Naval Store in N.S.W.. It was inspected in 1940. Life Jackets - Life jackets were part of the equipment carried by the Life Saving Rescue Crew of South Western Victoria, including Warrnambool, from around 1858 until the 1950s. The purpose of a life jacket is to keep the wearer afloat until he or she is rescued from the water. Life jackets were first invented in 1854 by Captain Ward of the Royal National Lifeboat Institution in Britain. The early life jackets were filled with cork, which is very buoyant. However, many times he cork caused the jacket to rise up quickly with a force that caused unconsciousness, sometimes turning the person face down in the water , causing them to drown. After the tragic loss of the ship RMS Titanic in 1912 and the lost lives of those onboard, a woman named Orpheus Newman designed the Salvus life jacket (Salvus means safe), which was filled with kapok instead of cork. Kapok comes from seed pods of the Ceiba Pentandra tree and is waterproof as well as buoyant. These Salvus jackets were used by the Royal Navy until new synthetic materials became available around the time of World War II.This life jacket is significant for its connection with local history, maritime history and marine technology. Lifesaving has been an important part of the services performed from Warrnambool's very early days, supported by State and Local Government, and based on the methods and experience of Great Britain. Hundreds of shipwrecks along the coast are evidence of the rough weather and rugged coastline. Ordinary citizens, the Harbour employees, and the volunteer boat and rescue crew, saved lives in adverse circumstances. Some were recognised as heroes, others went unrecognised. In Lady Bay, Warrnambool, there were around 16 known shipwrecks between 1850 and 1905. Many lives were saved but tragically, eight lives were lost.Life jacket, canvas covered, with two padded compartments filled with kapok. Designed to slip over the head. it has shoulder straps and straps for tying under the arms. An inscription and symbol is stamped on one shoulder strap. The life jacket was supplied by the General Naval Store, Defence Department, N.S.W., and inspected in in 1940.Inscription "G.N.S. [crown symbol] N.S.W / 12 JUN 1940 / INSPECTED".flagstaff hill maritime museum and village, flagstaff hill, maritime museum, maritime village, warrnambool, great ocean road, lady bay, warrnambool harbour, g.n.s., general naval store, 1940s life jacket, captain ward, royal national lifeboat instution, cork, kapok, life jacket, orpheus newman, salvus jacket, life saving, rescue, rescue crew, l.s.r.c., life saving equipment, marine technology, lifeboat, shipwreck victim, vintage -
Flagstaff Hill Maritime Museum and VillageEquipment - Rocket Key, John Dennett, c. 1860s
... history and marine technology. Lifesaving has been an important part of the services performed from Warrnambool's very early days, supported by State and Local Government, and based on the methods and experience of Great Britain. ...This rocket launcher key was used with the Dennett's Rocket Launcher system to remove the end cap of the Dennett's Rocket to expose the propellant to be fused . Saving lives in Warrnambool – The coastline of South West Victoria is the site of over 600 shipwrecks and many lost lives; even in Warrnambool’s Lady Bay there were around 16 known shipwrecks between 1850 and 1905, with eight lives lost. Victoria’s Government responded to the need for lifesaving equipment and, in 1858, the provision of rocket and mortar apparatus was approved for the lifeboat stations. In 1859 the first Government-built lifeboat arrived at Warrnambool Harbour and a shed was soon built for it on the Tramway Jetty, followed by a rocket house in 1864 to safely store the rocket rescue equipment. In 1878 the buildings were moved to the Breakwater (constructed from 1874-1890), and in 1910 the new Lifeboat Warrnambool arrived with its ‘self-righting’ design. For almost a hundred years the lifesaving and rescue crews, mostly local volunteers, trained regularly to rehearse and maintain their rescue skills. They were summoned when needed by alarms, gunshots, ringing bells and foghorns. In July 1873 a brass bell was erected at Flagstaff Hill specifically to call the rescue crew upon news of a shipwreck. Some crew members became local heroes but all served an important role. Rocket apparatus was used as recently as the 1950s. Rocket Rescue Method - Rocket rescue became the preferred lifesaving method of the rescue crews, being much safer that using a lifeboat in rough seas and poor conditions. The Government of Victoria adopted lifesaving methods based on Her Majesty’s Coast Guard in Great Britain. It authorised the first line-throwing rescue system in 1858. Captain Manby’s mortar powered a projectile connected to rope, invented in 1808. The equipment was updated to John Dennett’s 8-foot shaft and rocket method that had a longer range of about 250 yards. From the 1860s the breeches buoy and traveller block rocket rescue apparatus was in use. It was suspended on a hawser line and manually pulled to and from the distressed vessel carrying passengers and items. In the early 1870s Colonel Boxer’s rocket rescue method became the standard in Victoria. His two-stage rockets, charged by a gunpowder composition, could fire the line up to 500-600 yards, although 1000 yards range was possible. Boxer’s rocket carried the light line, which was faked, or coiled, in a particular way between pegs in a faking box to prevent twists and tangles when fired. The angle of firing the rocket to the vessel in distress was measured by a quadrant-type instrument on the side of the rocket machine. Decades later, in about 1920, Schermuly invented the line-throwing pistol that used a small cartridge to fire the rocket. . The British Board of Trade regularly published instructions for both the beach rescue crew and ship’s crew. It involved setting up the rocket launcher on shore at a particular angle, determined by the Head of the crew and measured by the quadrant, inserting a rocket that had a light-weight line threaded through its shaft, and then firing it across the stranded vessel, the line issuing freely from the faking board. A continuous whip line was then sent out to the ship’s crew, who hauled it in then followed the instructions – in four languages - on the attached tally board. The survivors would haul on the line to bring out the heavier, continuous whip line with a tail block connected to it. They then secured the block to the mast or other strong part the ship. The rescue crew on shore then hauled out a stronger hawser line, which the survivors fixed above the whip’s tail block. The hawser was then tightened by the crew pulling on it, or by using the hooked block on the shore end of the whip and attaching it to a sand anchor. The breeches buoy was attached to the traveller block on the hawser, and the shore crew then used the whip line to haul the breeches buoy to and from the vessel, rescuing the stranded crew one at a time. The rescue crew wore scarlet, numbered armbands and worked on a numerical rotation system, swapping members out to rest them. This rocket launcher key is a necessary part of the equipment for the the rocket launcher, which is significant for its connection with local history, maritime history and marine technology. Lifesaving has been an important part of the services performed from Warrnambool's very early days, supported by State and Local Government, and based on the methods and experience of Great Britain. Hundreds of shipwrecks along the coast are evidence of the rough weather and rugged coastline. Ordinary citizens, the Harbour employees, and the volunteer boat and rescue crew, saved lives in adverse circumstances. Some were recognised as heroes, others went unrecognised. In Lady Bay, Warrnambool, there were around 16 known shipwrecks between 1850 and 1905. Many lives were saved but tragically, eight lives were lost.Key, part of the Rocket Rescue equipment. T shaped metal key, round handle across the top and hexagonal shaped shaft and square end. Used to remove the end cap of the Dennett's Rocket to expose the propellant to be fused . Donation from Ports and Harbour.flagstaff hill maritime museum and village, flagstaff hill, maritime museum, maritime village, warrnambool, great ocean road, lady bay, warrnambool harbour, port of warrnambool, tramway jetty, breakwater, shipwreck, life-saving, lifesaving, rescue crew, rescue, rocket rescue, rocket crew, lifeboat men, beach rescue, line rescue, rescue equipment, rocket firing equipment, rocket rescue equipment, maritime accidents, shipwreck victim, rocket equipment, marine technology, rescue boat, lifeboat, volunteer lifesavers, volunteer crew, life saving rescue crew, lifesaving rescue crew, rocket apparatus, rocket rescue method, shore to ship, rocket apparatus rescue, stranded vessel, line throwing mortar, mortar, rocket rescue apparatus, line thrower, line throwing, lifeboat warrnambool, rocket house, rocket shed, rocket machine, rocket head, rocket launcher, rocket line, beach rescue set, rocket set, john dennett, rocket key, rocket launcher key, life saving -
Flagstaff Hill Maritime Museum and VillageEquipment - Life Jacket, 1918-1940s
... history and marine technology. Lifesaving has been an important part of the services performed from Warrnambool's very early days, supported by State and Local Government, and based on the methods and experience of Great Britain. ...This eight compartment life jacket date from around 1918 to 1940s, when kapok was used as the main filling for life jackets. Cork was used before that time, and synthetic materials began to be used from the mid-1940s. Life Jackets - Life jackets were part of the equipment carried by the Life Saving Rescue Crew of South Western Victoria, including Warrnambool, from around 1858 until the 1950s. The purpose of a life jacket is to keep the wearer afloat until he or she is rescued from the water. Life jackets were first invented in 1854 by Captain Ward of the Royal National Lifeboat Institution in Britain. The early life jackets were filled with cork, which is very buoyant. However, many times he cork caused the jacket to rise up quickly with a force that caused unconsciousness, sometimes turning the person face down in the water , causing them to drown. After the tragic loss of the ship RMS Titanic in 1912 and the lost lives of those onboard, a woman named Orpheus Newman designed the Salvus life jacket (Salvus means safe), which was filled with kapok instead of cork. Kapok comes from seed pods of the Ceiba Pentandra tree and is waterproof as well as buoyant. These Salvus jackets were used by the Royal Navy until new synthetic materials became available around the time of World War II.This life jacket is significant for its connection with local history, maritime history and marine technology. Lifesaving has been an important part of the services performed from Warrnambool's very early days, supported by State and Local Government, and based on the methods and experience of Great Britain. Hundreds of shipwrecks along the coast are evidence of the rough weather and rugged coastline. Ordinary citizens, the Harbour employees, and the volunteer boat and rescue crew, saved lives in adverse circumstances. Some were recognised as heroes, others went unrecognised. In Lady Bay, Warrnambool, there were around 16 known shipwrecks between 1850 and 1905. Many lives were saved but tragically, eight lives were lost.Life jacket, canvas covered, stitched into eight kapok filled compartments. One canvas strap with brass buckle is attached. Shoulder straps are no longer attached. Rflagstaff hill maritime museum and village, flagstaff hill, maritime museum, maritime village, warrnambool, great ocean road, lady bay, warrnambool harbour, kapok, life jacket, salvus jacket, life saving, rescue, rescue crew, l.s.r.c., life saving equipment, marine technology, lifeboat, shipwreck victim, vintage, captain ward, royal national lifeboat institution, orpheus newman -
Flagstaff Hill Maritime Museum and VillageEquipment - Life Jacket, Harry West Pty Ltd, Sailmakers, 1930s-1950s
... history and marine technology. Lifesaving has been an important part of the services performed from Warrnambool's very early days, supported by State and Local Government, and based on the methods and experience of Great Britain. ...This standard design life jacket was made by sailmakers Harry West Pty Ltd at Balmain, Sydney, New South Wales from 1930s to 1950s. Harry West - Harry was a chandler, sailmaker and rigger. He made and sold all kinds of canvas and rope goods including sails, awnings and covers. In 1925 he was advertising life buoys but by 1933 he was advertising life jackets. He and his wife Margery had six children. His business was still operating in 1954, when an article on the craft of sailmaking appeared in the Sydney Morning Herald. His sailmaker's loft was located, traditionally, close to Sydney's harbour. Life Jackets - Life jackets were part of the equipment carried by the Life Saving Rescue Crew of South Western Victoria, including Warrnambool, from around 1858 until the 1950s. The purpose of a life jacket is to keep the wearer afloat until he or she is rescued from the water. Life jackets were first invented in 1854 by Captain Ward of the Royal National Lifeboat Institution in Britain. The early life jackets were filled with cork, which is very buoyant. However, many times he cork caused the jacket to rise up quickly with a force that caused unconsciousness, sometimes turning the person face down in the water , causing them to drown. After the tragic loss of the ship RMS Titanic in 1912 and the lost lives of those onboard, a woman named Orpheus Newman designed the Salvus life jacket (Salvus means safe), which was filled with kapok instead of cork. Kapok comes from seed pods of the Ceiba Pentandra tree and is waterproof as well as buoyant. These Salvus jackets were used by the Royal Navy until new synthetic materials became available around the time of World War II.This life jacket is significant for its connection with local history, maritime history and marine technology. Lifesaving has been an important part of the services performed from Warrnambool's very early days, supported by State and Local Government, and based on the methods and experience of Great Britain. Hundreds of shipwrecks along the coast are evidence of the rough weather and rugged coastline. Ordinary citizens, the Harbour employees, and the volunteer boat and rescue crew, saved lives in adverse circumstances. Some were recognised as heroes, others went unrecognised. In Lady Bay, Warrnambool, there were around 16 known shipwrecks between 1850 and 1905. Many lives were saved but tragically, eight lives were lost.Life jacket, canvas covered, with two kapok padded compartments joined by shoulder straps and waist ties. Designed to slip over the head and tie at the waist. Inscriptions on pouches, some stencilled, some hand written, and inspection text on shoulder strap. Made by Harry West Pty Ltd., Sailmakers, Balmain, Sydney.Stencilled on pockets: “- - - NDARD / LIFE JACKET” [STANDARD LIFE JACKET], “HARRY WEST PTY LTD / SAILMAKERS / BALMAIN, SYDNEY” Stamped on shoulder strap: "XM3271RC" Hand painted on pocket: “DAVIES”flagstaff hill maritime museum and village, flagstaff hill, maritime museum, maritime village, warrnambool, lady bay, warrnambool harbour, captain ward, royal national lifeboat instution, kapok, life jacket, orpheus newman, salvus jacket, life saving, rescue, rescue crew, l.s.r.c., life saving equipment, marine technology, lifeboat, shipwreck victim, vintage, harry west, balmain, sydney, davies, standard life jacket, survivor, shipwreck, sailmakers, harry west pty ltd -
Flagstaff Hill Maritime Museum and VillageContainer - Storage Tin, Late 19th or early 20th Century
... history of metal packaging began in Bohemia in the 1200s. Metal has been produced for a very long time. But the first metal used for packaging was tin. In particular, it was the process of tin plating that was invented in Bohemia. Before this no other metal was economically able to be used for packaging. Later, in 1667 Andrew Yarranton, and English engineer, and Ambrose Crowley brought the method...history of metal packaging began in Bohemia in the 1200s. Metal has been produced for a very long time. But the first metal used for packaging was tin. In particular, it was the process of tin plating that was invented in Bohemia. Before this no other metal was economically able to be used for packaging. Later, in 1667 Andrew Yarranton, and English engineer, and Ambrose Crowley brought the method ...The history of metal packaging began in Bohemia in the 1200s. Metal has been produced for a very long time. But the first metal used for packaging was tin. In particular, it was the process of tin plating that was invented in Bohemia. Before this no other metal was economically able to be used for packaging. Later, in 1667 Andrew Yarranton, and English engineer, and Ambrose Crowley brought the method to England. Here it was improved by ironmasters including Philip Foley. Then by 1697, John Hanbury had a rolling mill at Pontypool in South Wales. The method they developed involved rolling iron plates using cylinders. This process enabled more uniform blank plates to be produced than was possible by just hammering the tin.The use of tin to protect and store food and other items, revolutionised the world.Container metal cylindrical plain tin with separate lid. Join line on side of cylinder. Very rusty.None.flagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, tin plating, food containers
