Showing 29 items matching "pulley machine"
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Kiewa Valley Historical SocietyPulley
... ...Pulley machine...Pulleys date back to Ancient Egypt circa 1800BC. it is a simple machine used to lift weights....Used by residents of the Kiewa Valley. Pulley Pulley machine Steel pulley. A pulley is a wheel on an axle or shaft enabling a taut cable or belt passing over the wheel to move and change direction, or transfer power between itself and a shaft. ...Pulleys date back to Ancient Egypt circa 1800BC. it is a simple machine used to lift weights.Used by residents of the Kiewa Valley.Steel pulley. A pulley is a wheel on an axle or shaft enabling a taut cable or belt passing over the wheel to move and change direction, or transfer power between itself and a shaft.pulley, pulley machine -
Flagstaff Hill Maritime Museum and VillageEquipment - Block, Tangyes engineering, Early 20th century
... pulley system...functional machine...pulley. The two-sheaved block has a mechanical advantage over a single-sheave block, using less power to lift a load. The block was made by Tangyes, established in Birmingham, UK, in 1857, and renowned for producing high-quality, reliable machines, equipment, and tools in the late 19th and early 20th centuries. ...Flagstaff Hill has a wide variety of these simple but very important pieces of equipment. warrnambool Flagstaff Hill Maritime Museum and Village Maritime Museum Maritime Village Great Ocean Road Shipwreck Coast block metal block two sheave block marine technology rigging Tangye ship rigging block with hook and becket becket block sailing block cargo block Tangyes block vintage nautical pulley rigging equipment pulley system functional machine machine lifting equipment marine equipment Richard Tangye & Brothers James Tangye and Brothers Tangye Brothers and Price Tangye Brothers Tangye Brothers & Holman Tangyes Ltd. ...This metal block may have been used as part of a boat or ship's rigging or winch. The becket is the loop or ring where a shackle could be attached to use as a pulley. The two-sheaved block has a mechanical advantage over a single-sheave block, using less power to lift a load. The block was made by Tangyes, established in Birmingham, UK, in 1857, and renowned for producing high-quality, reliable machines, equipment, and tools in the late 19th and early 20th centuries. Richard Tangye (1833–1906) and four of his brothers—James, Joseph, Edward, and George—were the sons of Joseph Tangye, a Quaker Cornish miner. In 1857, they founded the engineering firm Richard Tangye & Brothers in Birmingham, UK. In 1860, the firm became Tangye Brothers and moved to Cornwall Works in Birmingham. The business encouraged inventors to join the company and develop their patents there, as happened with Weston’s differential pulley block, invented by the Englishman Thomas Aldridge Weston in 1854. Tangye bought the patent in 1858, giving the firm the sole right to manufacture it. The design received a medal for “original application, practical utility and success” at the 1862 International Exhibition in London. Also in 1858, the Tangye firm was commissioned by Brunel’s shipping company to manufacture hydraulic lifting jacks, or rams, to launch the steamship SS Great Eastern. The success of this project brought favourable attention to the firm, and it became involved in other notable projects, including the erection of Cleopatra’s Needle in London in 1878 and work on the Forth Road Bridge in Scotland. The firm underwent several name changes over the years, including James Tangye and Brothers (1857), Tangye Brothers and Price (1859), Tangye Brothers (1860), Tangye Brothers & Holman (1876), Tangye Brothers (by 1878), Tangye Ltd. (1881), and then simply Tangye. Its machinery and equipment were exported worldwide. In 1884, a branch with showrooms, offices, and a warehouse was opened in Melbourne at Cornwall House, Collins Street West. The firm was well known for producing high-quality machinery for agriculture and industry. Even today, new Tangye machinery is available for a subsidiary of Allspeeds. An extensive account of the firm’s history, names, inventions, and further references is available in Grace’s Guide, which also includes references to and diagrams of the Tangye horizontal steam engine. The block is significant for its connection to the renowned and innovative Tangye machine makers, respected for their high quality and standards. The block's maker,, Tangyes, also manufactured an 1880s steam engine, sold by a Melbourne merchant, and locally significant for its use in a late-19th century cheese factory. The block also represents the many blocks used in many industries, including the marine concerns, for rigging and lifting. Flagstaff Hill has a wide variety of these simple but very important pieces of equipment.Becket block: a metal block with two sheaves, a hook, a becket attachment point, and straps. Inscription embossed. Made by Tangyes."TANGYES"warrnambool, flagstaff hill maritime museum and village, maritime museum, maritime village, great ocean road, shipwreck coast, block, metal block, two sheave block, marine technology, rigging, tangye, ship rigging, block with hook and becket, becket block, sailing block, cargo block, tangyes block, vintage, nautical pulley, rigging equipment, pulley system, functional machine, machine, lifting equipment, marine equipment, richard tangye & brothers, james tangye and brothers, tangye brothers and price, tangye brothers, tangye brothers & holman, tangyes ltd., cornwall works -
Bendigo Historical Society Inc.Photograph - HANRO COLLECTION: PHOTOGRAPH OF HANRO WEAVING MACHINE
... The photo has two men standing behind the weaving machine showing pulleys and wheels as finished fabric is rolled out at the end. ...The photo has two men standing behind the weaving machine showing pulleys and wheels as finished fabric is rolled out at the end. ...BHS CollectionPhotograph of Hanro Weaving Machine: Black and white photo with white border. The photo has two men standing behind the weaving machine showing pulleys and wheels as finished fabric is rolled out at the end. Top left hand side hand printed in blue ink is *MP 360*. On the back is a circular stamp in blue ink of the Royal Bendigo Historical Society of Victoria. Hand printed in black ink is *MP 360 Weaving Machine Hanro Mills Bendigo*. Bottom left is hand written in pencil is the word *Hanro* with a line under it. Box 116Aphotograph, building, hanro, hanro -
Flagstaff Hill Maritime Museum and VillageMachine - Lathe, W F & John Barnes, early 1900s
... pulley...steam power...steam engine...machine... shops often utilised a single power source, distributing power via roof-mounted belts and pulleys to operate several machines simultaneously. Over time, petrol-driven motors were introduced, and eventually, electricity became the standard power source. ...machine. Its bench is supported by decorative posts at each end, with each post dividing into arched legs. The lathe is mechanically connected to both a pulley and a flywheel, designed to be operated in conjunction with a steam engine. ... shops often utilised a single power source, distributing power via roof-mounted belts and pulleys to operate several machines simultaneously. Over time, petrol-driven motors were introduced, and eventually, electricity became the standard power source. ...This woodworking lathe, connected to both a pulley and a flywheel, demonstrates its historical operation with a steam engine. Such a configuration reflects manufacturing practices from the late 1800s and early 1900s, when steam power was the predominant source for driving workshop and factory machinery. Large machine shops often utilised a single power source, distributing power via roof-mounted belts and pulleys to operate several machines simultaneously. Over time, petrol-driven motors were introduced, and eventually, electricity became the standard power source. Conversion kits were made available in the late 19th and early 20th centuries to adapt older lathes to these newer, cleaner fuels. Manufacturer's History: W.F. & J. Barnes was a renowned maker of hand- and foot-powered treadle woodworking and metalworking machinery, established in 1869. The partnership between William F. Barnes and John Barnes was formalised in 1872, and the firm was incorporated in 1884. Their machines were used for both ‘farm’ applications and professional engineering. By 1881, the company began producing electrically powered machinery. By 1937, W.F. & J. Barnes expanded into manufacturing machinery for automotive assembly. The business closed in 1983, and in 1998, LeBlond Ltd. of Ohio acquired the firm. The lathe was donated by Briggs Marine, Melbourne: In Flagstaff Hill’s formative years, 1972-1975, Briggs Marine, Melbourne (Briggs Brass Foundry), donated equipment and objects used or made at their premises. The foundry was established in 1912 by Herbert Harrison Briggs. In 1965, the firm was owned by partners Cyril Briggs and Frank Lee: Cyril died in 1967, and Frank died in 1971, so the foundry was then run by his son and daughter-in-law, Les and Eva Lee. Briggs Marine’s Warrnambool Branch closed in 1972 after the death of Frank Lee in 1971. Flagstaff Hill’s founding director, John Lindsay, recalled that Briggs Marine’s family members gave personal assistance in setting up the displays in the original village shops, particularly the ‘Brass Foundry’ building, around the time the Maritime Museum opened in 1975. Briggs Marine still exists today, but the Briggs family is no longer involved. This early 1900s lathe marks a significant stage in the evolution of machinery, positioned between the era of hand-operated machines and the advent of electrically powered equipment. Its presence exemplifies the progression of industrial technology and craftsmanship during this period. The lathe is particularly notable for its association with the Briggs Brass Foundry. The foundry was known for developing a specialised brass alloy composed of non-ferrous metals, a formulation that resulted in durable products built to withstand the demanding conditions of marine environments. This focus on resilience and longevity made Briggs Brass Foundry’s goods highly sought after within the maritime sector. Briggs Maine, a long-established business, utilised the foundry’s capabilities to create cast goods tailored to the needs of the marine industry. The facility was equipped to deliver both custom-designed and mass-produced items, ensuring versatility in meeting various requirements. Many of Briggs Foundry’s products found their place on sailing and steam vessels throughout Victoria’s coastline, including in the port town of Warrnambool, where there was once a brancy of Briggs Marine. In addition to general marine fittings, Briggs Marine earned recognition for its expertise in bell-founding. The foundry’s reputation is closely linked to the restoration of the Schomberg Bell at Flagstaff Hill, a small but historically significant bell from a luxury migrant vessel dating back to the mid-19th century. The successful restoration of the Schomberg Bell demonstrates Briggs Brass Foundry’s commitment to preserving craftsmanship and maritime heritage.The lathe is a green, bench-type, steam-powered woodworking machine. Its bench is supported by decorative posts at each end, with each post dividing into arched legs. The lathe is mechanically connected to both a pulley and a flywheel, designed to be operated in conjunction with a steam engine. Included with the lathe is a range of accessories. Across the front of the machine, an inscription is cast, and a stamped, metal lathe pulley guide is attached to the drive mechanism. The lathe was manufactured by W. F. and J. Barnes, Rockford, Illinois, USA, during the 1900s.“W F and J Barnes, Rockford, USA” "1820" "1887"flagstaff hill, flagstaff hill maritime museum and village, warrnambool, maritime museum, maritime village, great ocean road, shipwreck coast, lathe, steam-operated lathe, steam-operated pulley, steam power, steam engine, machine, steam operated machine, metal work, foundry work, metal working trade, tool, pulley driven, metalworking, woodworking, barnes lathe, briggs marine, belt driven, wordworking lathe, free standing lathe, bench lathe, steam powered, vintage lathe, woodturning lathe, w. f. and j. barnes, illanois, early 20th century, briggs, briggs brass foundry, briggs marine foundry, briggs marine products, herbert harrison briggs, george edward briggs, cyril falkiner mckinnon briggs, collingwood, moorabbin, frank lee, les lee, eva lee, briggs marine warrnambool, non-ferrous founders, bell specialists, ship bell specialists, sand cast, marine equipment, marine fittings, foundry, brass foundry, founders -
Warrnambool and District Historical Society Inc.Artefact, Magnetic Electric Machine, 1920s
... Machine for Nervous & Other Diseases’ This is rectangular wooden box with a lid connected with metal hinges. The inside of the lid has a paper insert with printed material on it. The box has a metal mechanism inside and this includes a metal magnet, a pulley ...In the early 20th century there were many small machines and instruments developed to use as home cures. These included massage and vibratory instruments and those taking advantage of the growing use of electric currents in the treatment of nervous and mental health issues. This machine was used to produce a electric current to use on the human body to alleviate ailments that included nervous conditions, neuralgia, lumbago, back ache, muscle soreness and even toothache. Developments in allied health treatment saw the waning of the popularity of these kinds of medical aids by the mid 20th century.This machine is of great interest as an example of the items used by people in the late 19th and early 20th century as home cures for all sorts of ailments that afflicted people at the time.This is rectangular wooden box with a lid connected with metal hinges. The inside of the lid has a paper insert with printed material on it. The box has a metal mechanism inside and this includes a metal magnet, a pulley with a rubber belt and two round metal drums covered in dark blue felt. On the outside of the box is a metal handle that is connected to the mechanism inside. There is a metal closing catch on the outside of the box. There are also two wires on the outside of the box with one of these connected to the inside mechanism. The wires have hollow brass cylinders attached to the ends. The box is heavily stained and scuffed.‘Magneto Electric Machine for Nervous & Other Diseases’allied health in early 20th century, warrnambool, history of warrnambool -
Federation University Historical CollectionBook - Catalogue, McPherson's Engineering Catalogue, c1905
... Glover mining machine belts link belting belt fasteners pulleys leather hose Victoria Crescent Abbotsford Abbotsford Blue 24 page catalogue from Frank Vial and Sons. ...Blue 24 page catalogue from Frank Vial and Sons. Includes numerous line and photographic illustrations.non-fictionj.w. glover, john w. glover, mining, machine belts, link belting, belt fasteners, pulleys, leather hose, victoria crescent abbotsford, abbotsford -
Australian Gliding MuseumMachine - Glider – Sailplane, 1972
... pulleys, cables and bolts. The fuselage is simple with four main longerons and bulkheads with diagonal bracing. The wing has two identical solid spars which form a geodetic structure, hence the leading edge is non-structural. Machine ...The Hall Cherokee II glider is an American design for amateur construction from plans. The designer was Stan Hall (1915-2009), a professional engineer, who gained extensive experience in the United States aviation industry during World War 2 including the programs for military gliders. He continued to work as an engineer for aircraft manufacturers and as a consultant to the industry after the war. He was active in gliding and, in particular, the home built sailplane movement. The Cherokee II was one of about 10 glider designs that he produced: it came out in 1956. It is understood that over 100 Cherokee gliders have been built. In Australia the number is possibly 10 or 11. The Hall Cherokee VH-GVO was built by R.D Meares of Caringbah, New South Wales. The glider was registered as VH-GVO on 11 October 1973 and given serial number “GFA-HB-82” by the Gliding Federation of Australia. The Logbook for VH-GVO appears to be a complete record of the flying history; in aggregate 210 hours 40 minutes in the air from 331 flights. The first test hop occurred on 29 July 1972 at Camden, New South Wales. VH-GVO was last flown on 22 July 1986. Many of the flights recorded are of one or two hours duration. The glider was last inspected and certified as airworthy and in a reasonable condition at the Hunter Valley Gliding Club in July 1986. Since that time, until transferred to the Australian Gliding Museum, the glider was in storage. Structural restoration work has been completed on the fuselage and one wing. However, inspection of the other wing revealed extensive damage to the ribs and spars and consequently a decision was taken to make it a static exhibit. The exhibit is an example of home built construction of a type that has proved popular amongst amateur glider builders.The Hall Cherokee (formerly registered as VH-GVO) is a single seat wooden home built glider. The glider is constructed from wood, plywood, fabric and metal fittings, all commercial grade except for main wing fittings, pulleys, cables and bolts. The fuselage is simple with four main longerons and bulkheads with diagonal bracing. The wing has two identical solid spars which form a geodetic structure, hence the leading edge is non-structural. Registration VH-GVO – serial number GFA-HB-82 australian gliding, glider, sailplane, hall, cherokee, meares, hunter valley gliding club -
Bendigo Historical Society Inc.Document - MARKS COLLECTION: CODE OF SIGNALS FOR MINES CHART
... machine). James Hardie & Co., 581 Little Collins Street, Melbourne. Necessaries for success in mining enterprises are: Dick's original balata belting to drive your machinery with; Genuine Dodge wood split pulleys on the shafting, and fibro ciment(sic) sheets to protect you from fire. ...machine). James Hardie & Co., 581 Little Collins Street, Melbourne. Necessaries for success in mining enterprises are: Dick's original balata belting to drive your machinery with; Genuine Dodge wood split pulleys on the shafting, and fibro ciment(sic) sheets to protect you from fire. ...Poster, printed on coated fabric, wooden hanger on top. Yellow background, printed in red and blue. 'Code of Signals, Section 45 (19) of the Mines Act 1961. lode and alluvial mines, signals for winding' Signals: 1 stop when in motion, 1 heave up, 2 lower, 3 hold fast danger, 4 pause men coming to surface, 6 cage at liberty, 7 change tanks or cages, 8 put drum in or out of gear, 9 turn air on or off, 10 accident, 15 serious accident. Also lists firing signals. Advertisements for suppliers to mining companies around border of poster. E.g. Jaques Bros., Engineers, Coppin Street, Richmond, Melbourne. Ore and Stone Breakers manufactured in various sizes (has illustration of machine). James Hardie & Co., 581 Little Collins Street, Melbourne. Necessaries for success in mining enterprises are: Dick's original balata belting to drive your machinery with; Genuine Dodge wood split pulleys on the shafting, and fibro ciment(sic) sheets to protect you from fire. These sheets are also acid-proof.bendigo, mining, code of signals -
Flagstaff Hill Maritime Museum and VillageEquipment - Ship Rope Block, Russell & Co, Circa 1886
... Machine...mechanical advantage...block...wooden block...pulley...Glasgow Clipper Ship block and rigging ship’s block iron ship four-masted ship sailing ship windjammer Clyde Wright Breakenridge & Co of Glasgow fore and aft lifting bridges Machine mechanical advantage block wooden block pulley tackle sheave ship rigging double-sheave twin sheave Captain David Wood Thomson None Rope block, wooden double-sheave mechanical device with a short length of chain attached and remnants of the metal frame. ...This double-sheaved wooden ship’s block or pulley is a mechanical device used for lifting and moving heavy objects. It has two grooved wheels joined together, each with an axle between the cheeks or sides of the grooved wheel. Blocks and tackle are included in a ship’s rigging. These pulleys and ropes are used for the mechanical advantage they provide for lifting, moving and re-arranging the setting of the sails, which are very heavy work. Blocks are also used to load and unload the ship’s cargo. The FALLS of HALLADALE- The sailing ship Falls of Halladale was an iron-hulled, four-masted barque, used as a bulk carrier of general cargo. She left New York in August 1908 bound for Melbourne and Sydney. In her hold was general cargo consisting of roofing tiles, barbed wire, stoves, oil, and benzene as well as many other manufactured items. After three months at sea and close to her destination, a navigational error caused the Falls of Halladale to be wrecked on a reef off the Peterborough headland on the 15th of November, 1908. The captain and 29 crew members survived, but her cargo was largely lost, despite two salvage attempts in 1908-09 and 1910. The Court of Marine Inquiry in Melbourne ruled that the foundering of the ship was entirely due to Captain David Wood Thomson's navigational error, not too technical failure of the Clyde-built ship. The Falls of Halladale was built in1886 by Russell & Co., at Greenock shipyards on the River Clyde, Scotland for Wright, Breakenridge & Co of Glasgow. The ship had a sturdy construction built to carry maximum cargo and was able to maintain full sail in heavy gales, one of the last of the 'windjammers' that sailed the Trade Route. She and her sister ship, the Falls of Garry, were the first ships in the world to include fore and aft lifting bridges. The new, raised catwalk-type decking allowed the crew to move above the deck in stormy conditions.This artefact is important as it is an example of the materials and design of late-19th century ship’s rigging equipment. The object is also significant for its association with the historic sailing ship Falls of Halladale, wrecked in local waters in the early 20th century. The clipper ship Falls of Halladale shipwreck is of historical significance and is listed on the Victorian Heritage Register, No. S255. She was one of the last ships to sail the Trade Routes. She was one of the first vessels to have fore and aft lifting bridges. The vessel is an example of the remains of an international cargo ship and also represents aspects of Victoria’s shipping industry.Rope block, wooden double-sheave mechanical device with a short length of chain attached and remnants of the metal frame. It was recovered from the Falls of Halladale.Noneflagstaff hill, maritime museum, maritime village, warrnambool, great ocean road, shipwreck coast, falls of halladale, shipwreck, peterborough, 1908 shipwreck, peterborough shipwreck, russell & co., greenock, wright breakenridge & co. glasgow, clipper ship, block and rigging, ship’s block, iron ship, four-masted ship, sailing ship, windjammer, clyde, wright, breakenridge & co of glasgow, fore and aft lifting bridges, machine, mechanical advantage, block, wooden block, pulley, tackle, sheave, ship rigging, double-sheave, twin sheave, captain david wood thomson -
Flagstaff Hill Maritime Museum and VillageMachine - Pulley Sheave, Circa 1886
... As an artifact from the wrecked ship, it helps us to remember today the story of the wrecking and is an important reminder of a marine incident in Victoria's maritime history. flagstaff hill warrnambool shipwrecked-coast flagstaff-hill flagstaff-hill-maritime-museum maritime-museum shipwreck-coast flagstaff-hill-maritime-village wooden pulley sheave falls of halladale None Wooden Pulley Sheave from the vessel Falls of Halladale Machine Pulley Sheave ...The pulley sheave comes from the Falls of Halladale, a four-masted iron-hulled barque that was built in 1886 for the long-distance bulk carrier trade. The vessel was built for the Falls Line (Wright, Breakenridge & Co., Glasgow, Scotland) at the shipyard of Russell & Co., Greenock on the River Clyde, she was named after a waterfall on the Halladale River in the Caithness district of Scotland. The ship's design was advanced for her time, incorporating features that improved crew safety and efficiency such as elevated bridges to allow the crew to move between forward and aft in relative safety during heavy seas. The Falls of Halladale was the seventh vessel in a series of eight similar iron-hulled sailing ships, all built by Russell & Co and all named after waterfalls in Scotland. The Falls of Halladale was preceded by the Falls of Clyde (1878), the Falls of Bruar (1879), the Falls of Dee (1882), the Falls of Afton (1882), the Falls of Foyers (1883) and the Falls of Earn (1884). The Falls of Halladale was followed by a sister ship, the Falls of Garry (1886). The Falls of Clyde is afloat today and is a major attraction at the Hawaii Maritime Center in Honolulu. The Falls of Halladale is best known for her spectacular demise in a shipwreck near Peterborough, Victoria on the shipwreck coast of Victoria, Australia. On the night of 14 November 1908, she was sailed in dense fog directly onto the rocks due to a navigational error. The crew of 29 abandoned ship safely and all made it ashore by boat, leaving the ship foundering with her sails set. For weeks after the wreck, large crowds gathered to view the ship as she gradually broke up and then sank in the shallow water. Soon after the accident the ship's master, Capt. David Wood Thomson was brought before a Court of Marine Inquiry in Melbourne and found guilty of a gross act of misconduct, having carelessly navigated the ship, having neglected to take proper soundings, and having failed to place the ship on a port tack before it became too late to avoid the shipwreck. Capt. Thomson's punishment included a small fine and he had his Certificate of Competency as a Master suspended for six months. Today the Falls of Halladale is a popular destination for recreational divers. The wreck is easily accessible by scuba divers about 300 m offshore in 3 to 15 m of water. The hull lies on its collapsed starboard side. Some of the original cargo of 56,763 roof slates remains at the site of the wreck along with corroded masses of what used to be coils of barbed wire. Twenty-two thousand slates were salvaged in the 1980s and used to provide roofing at the Flagstaff Hill Maritime Village in Warrnambool. An anchor that was recovered in 1974 is on display at the village. The pulley sheave is significant as a salvaged item from the Victorian heritage-listed Falls of Halladale wreck. As an artifact from the wrecked ship, it helps us to remember today the story of the wrecking and is an important reminder of a marine incident in Victoria's maritime history. Wooden Pulley Sheave from the vessel Falls of HalladaleNoneflagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, wooden pulley sheave, falls of halladale -
Flagstaff Hill Maritime Museum and VillageFunctional object - Pulley Sheave, 1873
... Pulley sheave; round wooden block with metal disc in centre. Metal disc has large central machined hole and three equidistant small holes closer to the edge. ...The collections historically significance is that it is associated unfortunately with the worst and best-known shipwreck in Victoria's history. flagstaff hill warrnambool shipwrecked coast flagstaff hill maritime museum maritime museum shipwreck coast flagstaff hill maritime village great ocean road loch line loch ard captain gibbs eva carmichael tom pearce glenample station mutton bird island loch ard gorge pulley sheave pulley Ship Rigging None Pulley sheave; round wooden block with metal disc in centre. Metal disc has large central machined hole and three equidistant small holes closer to the edge. ...A sheave is a pulley with a grooved wheel for holding a belt, wire rope, or rope. The grooved wheel spins on an axle or bearing inside the frame of the block. This allows the wire or rope to move freely minimizing friction and wear on the cable. Sheaves can be used to redirect a cable or rope, lift loads, and transmit power. The words sheave and pulley are sometimes used interchangeably. The sheave was recovered at the time of the discovery of the Loch Ard wreck site in the 1970s. History of the Loch Ard: The Loch Ard got its name from ”Loch Ard” a loch that lies to the west of Aberfoyle, and the east of Loch Lomond. It means "high lake" in Scottish Gaelic. The vessel belonged to the famous Loch Line which sailed many vessels from England to Australia. The Loch Ard was built in Glasgow by Barclay, Curdle and Co. in 1873, the vessel was a three-masted square-rigged iron sailing ship that measured 79.87 meters in length, 11.58 m in width, and 7 m in depth with a gross tonnage of 1693 tons with a mainmast that measured a massive 45.7 m in height. Loch Ard made three trips to Australia and one trip to Calcutta before its fateful voyage. Loch Ard left England on March 2, 1878, under the command of 29-year-old Captain Gibbs, who was newly married. The ship was bound for Melbourne with a crew of 37, plus 17 passengers. The general cargo reflected the affluence of Melbourne at the time. Onboard were straw hats, umbrellas, perfumes, clay pipes, pianos, clocks, confectionery, linen and candles, as well as a heavier load of railway irons, cement, lead and copper. There were other items included that were intended for display in the Melbourne International Exhibition of 1880. The voyage to Port Phillip was long but uneventful. Then at 3 am on June 1, 1878, Captain Gibbs was expecting to see land. But the Loch Ard was running into a fog which greatly reduced visibility. Captain Gibbs was becoming anxious as there was no sign of land or the Cape Otway lighthouse. At 4 am the fog lifted and a lookout aloft announced that he could see breakers. The sheer cliffs of Victoria's west coast came into view, and Captain Gibbs realised that the ship was much closer to them than expected. He ordered as much sail to be set as time would permit and then attempted to steer the vessel out to sea. On coming head-on into the wind, the ship lost momentum, the sails fell limp and Loch Ard's bow swung back towards land. Gibbs then ordered the anchors to be released in an attempt to hold their position. The anchors sank some 50 fathoms - but did not hold. By this time the ship was among the breakers and the tall cliffs of Mutton Bird Island rose behind. Just half a mile from the coast, the ship's bow was suddenly pulled around by the anchor. The captain tried to tack out to sea, but the ship struck a reef at the base of Mutton Bird Island, near Port Campbell. Waves subsequently broke over the ship and the top deck became loosened from the hull. The masts and rigging came crashing down knocking passengers and crew overboard. When a lifeboat was finally launched, it crashed into the side of Loch Ard and capsized. Tom Pearce, who had launched the boat, managed to cling to its overturned hull and shelter beneath it. He drifted out to sea and then on the flood tide came into what is now known as Loch Ard Gorge. He swam to shore, bruised and dazed, and found a cave in which to shelter. Some of the crew stayed below deck to shelter from the falling rigging but drowned when the ship slipped off the reef into deeper water. Eva Carmichael a passenger had raced onto the deck to find out what was happening only to be confronted by towering cliffs looming above the stricken ship. In all the chaos, Captain Gibbs grabbed Eva and said, "If you are saved Eva, let my dear wife know that I died like a sailor". That was the last Eva Carmichael saw of the captain. She was swept off the ship by a huge wave. Eva saw Tom Pearce on a small rocky beach and yelled to attract his attention. He dived in and swam to the exhausted woman and dragged her to shore. He took her to the cave and broke the open case of brandy which had washed up on the beach. He opened a bottle to revive the unconscious woman. A few hours later Tom scaled a cliff in search of help. He followed hoof prints and came by chance upon two men from nearby Glenample Station three and a half miles away. In a complete state of exhaustion, he told the men of the tragedy. Tom then returned to the gorge while the two men rode back to the station to get help. By the time they reached Loch Ard Gorge, it was cold and dark. The two shipwreck survivors were taken to Glenample Station to recover. Eva stayed at the station for six weeks before returning to Ireland by steamship. In Melbourne, Tom Pearce received a hero's welcome. He was presented with the first gold medal of the Royal Humane Society of Victoria and a £1000 cheque from the Victorian Government. Concerts were performed to honour the young man's bravery and to raise money for those who lost family in the disaster. Of the 54 crew members and passengers on board, only two survived: the apprentice, Tom Pearce and the young woman passenger, Eva Carmichael, who lost her family in the tragedy. Ten days after the Loch Ard tragedy, salvage rights to the wreck were sold at auction for £2,120. Cargo valued at £3,000 was salvaged and placed on the beach, but most washed back into the sea when another storm developed. The wreck of Loch Ard still lies at the base of Mutton Bird Island. Much of the cargo has now been salvaged and some items were washed up into Loch Ard Gorge. Cargo and artefacts have also been illegally salvaged over many years before protective legislation was introduced in March 1982. One of the most unlikely pieces of cargo to have survived the shipwreck was a Minton majolica peacock- one of only nine in the world. The peacock was destined for the Melbourne 1880 International Exhibition. It had been well packed, which gave it adequate protection during the violent storm. Today the Minton peacock can be seen at the Flagstaff Hill Maritime Museum in Warrnambool. From Australia's most dramatic shipwreck it has now become Australia's most valuable shipwreck artifact and is one of very few 'objects' on the Victorian State Heritage Register. The shipwreck of the Loch Ard is of significance for Victoria and is registered on the Victorian Heritage Register ( S 417). Flagstaff Hill has a varied collection of artefacts from Loch Ard and its collection is significant for being one of the largest accumulation of artefacts from this notable Victorian shipwreck. The collections object is to also give us a snapshot into history so we can interpret the story of this tragic event. The collection is also archaeologically significant as it represents aspects of Victoria's shipping history that allows us to interpret Victoria's social and historical themes of the time. The collections historically significance is that it is associated unfortunately with the worst and best-known shipwreck in Victoria's history. Pulley sheave; round wooden block with metal disc in centre. Metal disc has large central machined hole and three equidistant small holes closer to the edge. Part of the rope groove is uneven. Recovered from the wreck of the Loch Ard. Noneflagstaff hill, warrnambool, shipwrecked coast, flagstaff hill maritime museum, maritime museum, shipwreck coast, flagstaff hill maritime village, great ocean road, loch line, loch ard, captain gibbs, eva carmichael, tom pearce, glenample station, mutton bird island, loch ard gorge, pulley sheave, pulley, ship rigging -
Flagstaff Hill Maritime Museum and VillageEquipment - Ship Rope Block, Russell & Co, Circa 1886
... Machine...mechanical advantage...block...wooden block...pulley...Glasgow Clipper Ship Machine mechanical advantage block wooden block pulley tackle sheave ship rigging double-sheave twin sheave Captain David Wood Thomson iron ship four-masted ship sailing ship windjammer Clyde Wright Breakenridge & Co of Glasgow fore and aft lifting bridges None Ship's block; a double-sheave wooden block with thick concretion on it. ...This double-sheaved wooden ship’s block or pulley is a mechanical device used for lifting and moving heavy objects. It has two grooved wheels joined together, each with an axle between the cheeks or sides of the grooved wheel. Blocks and tackle are included in a ship’s rigging. These pulleys and ropes are used for the mechanical advantage they provide for lifting, moving and re-arranging the setting of the sails, which are very heavy work. Blocks are also used to load and unload the ship’s cargo. The FALLS of HALLADALE- The sailing ship Falls of Halladale was an iron-hulled, four-masted barque, used as a bulk carrier of general cargo. She left New York in August 1908 bound for Melbourne and Sydney. In her hold was general cargo consisting of roofing tiles, barbed wire, stoves, oil, and benzene as well as many other manufactured items. After three months at sea and close to her destination, a navigational error caused the Falls of Halladale to be wrecked on a reef off the Peterborough headland on the 15th of November, 1908. The captain and 29 crew members survived, but her cargo was largely lost, despite two salvage attempts in 1908-09 and 1910. The Court of Marine Inquiry in Melbourne ruled that the foundering of the ship was entirely due to Captain David Wood Thomson's navigational error, not too technical failure of the Clyde-built ship. The Falls of Halladale was built in1886 by Russell & Co., at Greenock shipyards on the River Clyde, Scotland for Wright, Breakenridge & Co of Glasgow. The ship had a sturdy construction built to carry maximum cargo and was able to maintain full sail in heavy gales, one of the last of the 'windjammers' that sailed the Trade Route. She and her sister ship, the Falls of Garry, were the first ships in the world to include fore and aft lifting bridges. The new, raised catwalk-type decking allowed the crew to move above the deck in stormy conditions.This artefact is important as it is an example of the materials and design of late-19th century ship’s rigging equipment. The object is also significant for its association with the historic sailing ship Falls of Halladale, wrecked in local waters in the early 20th century. The clipper ship Falls of Halladale shipwreck is of historical significance and is listed on the Victorian Heritage Register, No. S255. She was one of the last ships to sail the Trade Routes. She was one of the first vessels to have fore and aft lifting bridges. The vessel is an example of the remains of an international cargo ship and also represents aspects of Victoria’s shipping industry.Ship's block; a double-sheave wooden block with thick concretion on it. The rope block was recovered from the wreck of the sailing ship, Falls of Halladale.Noneflagstaff hill, maritime museum, maritime village, warrnambool, great ocean road, shipwreck coast, falls of halladale, shipwreck, peterborough, 1908 shipwreck, peterborough shipwreck, russell & co., greenock, wright breakenridge & co. glasgow, clipper ship, machine, mechanical advantage, block, wooden block, pulley, tackle, sheave, ship rigging, double-sheave, twin sheave, captain david wood thomson, iron ship, four-masted ship, sailing ship, windjammer, clyde, wright, breakenridge & co of glasgow, fore and aft lifting bridges -
Flagstaff Hill Maritime Museum and VillageMachine - Fusee Clock Mechanism, early 20th Century
... machined pinions, and a fusee. The mounting of the pendulum is missing and It has a recoil escapement. A fusee is a conical pulley driven through a chain by the spring barrel. ...machined pinions, and a fusee. The mounting of the pendulum is missing and It has a recoil escapement. A fusee is a conical pulley driven through a chain by the spring barrel. ...The origin of the fusee is not known. Many sources credit clockmaker Jacob Zech of Prague with inventing it around 1525. The earliest dated fusee clock was made by Zech in 1525, but the fusee appeared earlier, with the first spring-driven clocks in the 15th century. The idea probably did not originate with clockmakers, since the earliest known example is in a crossbow windlass shown in a 1405 military manuscript. Drawings from the 15th century by Filippo Brunelleschi and Leonardo da Vinci also show fusee mechanisms. The earliest existing clock with a fusee, also the earliest spring-powered clock, is the Burgunderuhr (Burgundy clock), a chamber clock whose iconography suggests that it was made for Phillipe the Good, Duke of Burgundy about 1430. Springs were first employed to power clocks in the 15th century, to make them smaller and portable.[1][5] These early spring-driven clocks were much less accurate than weight-driven clocks. Unlike a weight on a cord, which exerts a constant force to turn the clock's wheels, the force a spring exerts diminishes as the spring unwinds. The primitive verge and foliot timekeeping mechanism, used in all early clocks, was sensitive to changes in drive force. So early spring-driven clocks slowed down over their running period as the mainspring unwound. This problem is called lack of isochronism. Two solutions to this problem appeared with the first spring-driven clocks; the stack freed and the fusee. The stack freed, a crude cam compensator, added a lot of friction and was abandoned after less than a century. The fusee was a much more lasting idea. As the movement ran, the tapering shape of the fusee pulley continuously changed the mechanical advantage of the pull from the mainspring, compensating for the diminishing spring force. Clockmakers empirically discovered the correct shape for the fusee, which is not a simple cone but a hyperboloid. The first fusees were long and slender, but later ones have a squatter compact shape. Fusees became the standard method of getting constant force from a mainspring, used in most spring-wound clocks, and watches when they appeared in the 17th century. Around 1726 John Harrison added the maintaining power spring to the fusee to keep marine chronometers running during winding, and this was generally adopted. The fusee was a good mainspring compensator, but it was also expensive, difficult to adjust, and had other disadvantages: It was bulky and tall and made pocket watches unfashionably thick. If the mainspring broke and had to be replaced, a frequent occurrence with early mainsprings, the fusee had to be readjusted to the new spring. If the fusee chain broke, the force of the mainspring sent the end whipping about the inside of the clock, causing damage. The invention of the pendulum and the balance spring in the mid-17th century made clocks and watches much more isochronous, by making the timekeeping element a harmonic oscillator, with a natural "beat" resistant to change. The pendulum clock with an anchor escapement, invented in 1670, was sufficiently independent of drive force so that only a few had fusees. In pocketwatches, the verge escapement, which required a fusee, was gradually replaced by escapements which were less sensitive to changes in mainspring force: the cylinder and later the lever escapement. In 1760, Jean-Antoine Lépine dispensed with the fusee, inventing a going barrel to power the watch gear train directly. This contained a very long mainspring, of which only a few turns were used to power the watch. Accordingly, only a part of the mainspring's 'torque curve' was used, where the torque was approximately constant. In the 1780s, pursuing thinner watches, French watchmakers adopted the going barrel with the cylinder escapement. By 1850, the Swiss and American watchmaking industries employed the going barrel exclusively, aided by new methods of adjusting the balance spring so that it was isochronous. England continued to make the bulkier full plate fusee watches until about 1900. They were inexpensive models sold to the lower classes and were derisively called "turnips". After this, the only remaining use for the fusee was in marine chronometers, where the highest precision was needed, and bulk was less of a disadvantage until they became obsolete in the 1970s. Item is an example of clock mechanisms used until 1910 for many different styles of clocks and went out of fashion in the 1970s due to improvements in clock and watch making.Brass fusse clock movement, It has very heavy brass plates and wheels, high-count machined pinions, and a fusee. The mounting of the pendulum is missing and It has a recoil escapement. A fusee is a conical pulley driven through a chain by the spring barrel. As the spring runs down, the chain acts at a larger and larger radius on the conical pulley, equalising the driving torque. This keeps the rate of the clock more even over the whole run. It has motion work to drive an hour hand as well as a minute hand and the centre arbor is extended behind the back plate to drive some other mechanism.Inscription scratched on back"AM 40" flagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, clock mechanism, fusee mechanism, horology -
Flagstaff Hill Maritime Museum and VillageMachine - Pulley Sheave, Circa 1886
... As an artifact from the wrecked ship, it helps us to remember today the story of the wrecking and is an important reminder of a marine incident in Victoria's maritime history. flagstaff hill warrnambool shipwrecked-coast flagstaff-hill flagstaff-hill-maritime-museum maritime-museum shipwreck-coast flagstaff-hill-maritime-village wooden pulley sheave falls of halladale None Wooden Pulley Sheave from the vessel, Falls of Halladale Machine Pulley Sheave ...The pulley sheave comes from the Falls of Halladale, a four-masted iron-hulled barque that was built in 1886 for the long-distance bulk carrier trade. The vessel was built for the Falls Line (Wright, Breakenridge & Co., Glasgow, Scotland) at the shipyard of Russell & Co., Greenock on the River Clyde, she was named after a waterfall on the Halladale River in the Caithness district of Scotland. The ship's design was advanced for her time, incorporating features that improved crew safety and efficiency such as elevated bridges to allow the crew to move between forward and aft in relative safety during heavy seas. The Falls of Halladale was the seventh vessel in a series of eight similar iron-hulled sailing ships, all built by Russell & Co and all named after waterfalls in Scotland. The Falls of Halladale was preceded by the Falls of Clyde (1878), the Falls of Bruar (1879), the Falls of Dee (1882), the Falls of Afton (1882), the Falls of Foyers (1883) and the Falls of Earn (1884). The Falls of Halladale was followed by a sister ship, the Falls of Garry (1886). The Falls of Clyde is afloat today and is a major attraction at the Hawaii Maritime Center in Honolulu. The Falls of Halladale is best known for her spectacular demise in a shipwreck near Peterborough, Victoria on the shipwreck coast of Victoria, Australia. On the night of 14 November 1908, she was sailed in dense fog directly onto the rocks due to a navigational error. The crew of 29 abandoned ship safely and all made it ashore by boat, leaving the ship foundering with her sails set. For weeks after the wreck, large crowds gathered to view the ship as she gradually broke up and then sank in the shallow water. Soon after the accident the ship's master, Capt. David Wood Thomson was brought before a Court of Marine Inquiry in Melbourne and found guilty of a gross act of misconduct, having carelessly navigated the ship, having neglected to take proper soundings, and having failed to place the ship on a port tack before it became too late to avoid the shipwreck. Capt. Thomson's punishment included a small fine and he had his Certificate of Competency as a Master suspended for six months. Today the Falls of Halladale is a popular destination for recreational divers. The wreck is easily accessible by scuba divers about 300 m offshore in 3 to 15 m of water. The hull lies on its collapsed starboard side. Some of the original cargo of 56,763 roof slates remains at the site of the wreck along with corroded masses of what used to be coils of barbed wire. Twenty-two thousand slates were salvaged in the 1980s and used to provide roofing at the Flagstaff Hill Maritime Village in Warrnambool. An anchor that was recovered in 1974 is on display at the village. The pulley sheave is significant as a salvaged item from the Victorian heritage-listed Falls of Halladale wreck. As an artifact from the wrecked ship, it helps us to remember today the story of the wrecking and is an important reminder of a marine incident in Victoria's maritime history. Wooden Pulley Sheave from the vessel, Falls of HalladaleNoneflagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, wooden pulley sheave, falls of halladale -
Flagstaff Hill Maritime Museum and VillageMachine - Pulley, Ca 1889
... pulley with a string on which a label is attached. Most of the six cylindrical metal roller bearings are sand encrusted but some are still visible. Recovered from the wreck of the ship NEWFIELD. Machine ...Wooden pulley wheel section from the wreck “Newfield”. The Newfield was a three-masted iron and steel barque, built in Dundee, Scotland, in 1889 by Alexander Stephen and Sons. It was owned by the Newfield Ship Company in 1890 and later that year It was registered in Liverpool to owners Brownells and Co. The Newfield left Sharpness, Scotland, on 28th May 1892 with a crew of 25 under the command of Captain George Scott and on 1st June left Liverpool. She was bound for Brisbane, Australia, with a cargo of 1850 tons of fine rock salt, the main export product of Sharpness. At about 9pm on 28th August 1892, in heavy weather, Captain Scott sighted, between heavy squalls, the Cape Otway light on the mainland of Victoria but, due to a navigational error (the ship’s chronometers were wrong), he assumed it to be the Cape Wickham light on King Island, some 40 miles south. He altered his course to the north, expecting to enter Bass Strait. The ship was now heading straight for the south west Victorian coast and at about 1:30am ran aground on a reef about 100 yards from shore and one mile east of Curdie’s Inlet, Peterborough. The ship struck heavily three times before grounding on an inner shoal with 6 feet of water in the holds. Rough sea made the job of launching lifeboats very difficult. The first two lifeboats launched by the crew were smashed against the side of the ship and some men were crushed or swept away. The third lifeboat brought eight men to shore. It capsized when the crew tried to return it to the ship for further rescue The Port Campbell rocket crew arrived and fired four rocket lines, none of which connected with the ship. A local man, Peter Carmody, volunteered to swim one mile to the ship with a line to guide the fourth and final lifeboat safely to shore. Seventeen men survived the shipwreck but the captain and eight of his crew perished. The Newfield remained upright on the reef with sails set for a considerable time as the wind slowly ripped the canvas to shreds and the sea battered the hull to pieces. The Marine Board inquiry found the wreck was caused by a "one man style of navigation" and that the Captain had not heeded the advice of his crew. According to Jack Loney ‘… when the drama was over . . the Newfield was deserted except for the Captain’s dog and two pigs.’ Flagstaff Hill Maritime Museum has several artefacts that have been salvaged from the wreck. See also other items in the Flagstaff Hill Newfield Collection.The report from SHP documented the following in regards to the Newfield collection: Flagstaff Hill’s collection of artefacts from the Newfield is of historical and archaeological significance at a State level, because of its association with the shipwreck, which is on the Victorian Heritage Register. The collection is significant because of its relationship between the objects. The Newfield collection is archaeologically significant as it is the remains of an international cargo ship. The Newfield collection is historically significant for representing aspects of Victoria’s shipping history and its potential to interpret sub-theme 1.5 (Living with natural processes). The collection is also historically significant for its association with the shipwreck. The Newfield collection meets the following criteria for assessment: Criteria A: Importance to the course, or pattern, of Victoria’s cultural history Criteria B: Possession of uncommon, rare or endangered aspects of Victoria’s cultural history Criteria C: Potential to yield information that will contribute to an understanding of Victoria’s cultural history This item is an oval-shaped brown and orange wooden shell from a ship’s pulley. The original wooden material is now petrified but the lighter coloured concentric rings of the wood's grain are still visible. A metal sheave or drum is fitted into the centre hole and some of the edge of its sheave’s collar has corroded and broken away. The collar has three holes of equal size that are evenly spaced around it. The bearing ring is now detached but still connected to the pulley with a string on which a label is attached. Most of the six cylindrical metal roller bearings are sand encrusted but some are still visible. Recovered from the wreck of the ship NEWFIELD.The pulley has a string through it that attaches it to the bearing. The label on the string bears the handwritten words “PULLEY WHEEL / NEWFIELD / PETER ROLAND”.block, flagstaff hill, maritime museum, shipwreck coast, warrnambool, peter carmody, carmody, newfield, shipwreck, pulley, wheel, pulley block, sheave, drum, peterborough, south west victoria, rocket, rocket crew, shipwreck artefact, flagstaff hil maritime museum -
Flagstaff Hill Maritime Museum and VillageDrill Press, early to mid-20th century
... pulley driven flywheel, with the aid of an engine connected to a power supply. In the late 1800s early 1900s a drill press like this would have been driven by steam from a boiler, the main power source for manufacturer’s power at that time. Dawn’s Golden Anniversary 1917-1967 Catalogue describes this model 611 drill as … “Ruggedly constructed with accurately reamed bearings. The coupling between the main spindle and feed screw engages the full circumference of the spindle, and embraces a ball-bearing thrust race. The pillar, as in all “Dawn Drilling Machines...Post type drill press machine with gear driven flywheel. Drill press is attached to a post and is fitted with a pulley belt and will run at a speed of maxim 200 r.p.m. ...AUSTRALIA", " 611" Post type drill press machine with gear driven flywheel. Drill press is attached to a post and is fitted with a pulley belt and will run at a speed of maxim 200 r.p.m. ...This post drill press has been made by Melbourne business, Dawn Manufacturing Company. It can be operated manually or by a pulley driven flywheel, with the aid of an engine connected to a power supply. In the late 1800s early 1900s a drill press like this would have been driven by steam from a boiler, the main power source for manufacturer’s power at that time. Dawn’s Golden Anniversary 1917-1967 Catalogue describes this model 611 drill as … “Ruggedly constructed with accurately reamed bearings. The coupling between the main spindle and feed screw engages the full circumference of the spindle, and embraces a ball-bearing thrust race. The pillar, as in all “Dawn Drilling Machines” is a solid bright steel bar, in place of the usual light tubing. Adjustable automatic feed.” And “F. & l. Pulleys extra, if required”. DAWN MANUFACTURING CO. The Dawn Manufacturing Co. was founded in Coburg, Melbourne, in 1917 by the four Blake brothers, who were all engineers. After World War I Dawn was supplying drills Australia wide and the company was growing at a healthy rate. During the depression they remained busy, with employees working 60-80 hour weeks. Dawn was contracted to supply vices and clamps to the Australian Defence Department and munitions factory during the World War II. - 1959 the company was taken over by G.N. Raymond Group. - 1967 the Dawn Manufacturing Co. had distributors in Australia and overseas, including USA, Canada, New Zealand, Asia and the Middle East. - 1973 the Siddons Ramset Limited acquired Dawn. - December 1991, Dawn became a unit of the United States owned Stanley Works Pty. Ltd. - November 1998 Dawn became 100 per cent Australian owned. The drill is a typical tool of a blacksmith, cart wright, wheelwright and garage business. It is an example of the tools of the blacksmiths’ trade in Victoria in the early to mid-20th century.Post type drill press machine with gear driven flywheel. Drill press is attached to a post and is fitted with a pulley belt and will run at a speed of maxim 200 r.p.m. The machine can also be manually operated. It has an aperture in the centre, a chuck, for the drill bit and has two metal handles at the centre, on the right hand side. Gear ratio 2:1 main drive, 6" diam, 3:1 reduction gear. Made by Dawn of Melbourne, Australia. Model No. 611, Code No. 9157"DAWN MFG COY”, “MELB. AUSTRALIA", " 611"flagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, blacksmiths, blacksmith’s drill, blacksmith tools, dawn drill model no. 611, dawn drill code no. 9157, dawn manufacturing coy melbourne, dawn manufacturing coy coburg, dawn post drill, drilling machine, drill with gear driven flywheel, forging tool, metal working tool, post drill, steam powered drill, trade tool, warrnambool district 1900s -
Flagstaff Hill Maritime Museum and VillageAward - Certificate of Service, F. W. Strahle, James Patten, 23-08-1907
... The images on the Certificate show a collage of rescue events performed by the lifesavers; a shipwreck rescue in progress, lifeboat conveying five boatmen using two oars each, and a bowman standing at the bow, a linesman wearing a life jacket and holding a rescue line, a lifesaver ring with images of three sailing ships inside it, a shipwreck near shore, a woman and girl in shallow water, a rescue using a breeches buoy on the lifeline, two rescuers walking towards the survivor, rescue crew wearing waterproof clothing, a rocket machine with a pulley to bring the survivor in a breaches buoy to shore, and a rescue crew member holding a flare. ...The images on the Certificate show a collage of rescue events performed by the lifesavers; a shipwreck rescue in progress, lifeboat conveying five boatmen using two oars each, and a bowman standing at the bow, a linesman wearing a life jacket and holding a rescue line, a lifesaver ring with images of three sailing ships inside it, a shipwreck near shore, a woman and girl in shallow water, a rescue using a breeches buoy on the lifeline, two rescuers walking towards the survivor, rescue crew wearing waterproof clothing, a rocket machine with a pulley to bring the survivor in a breaches buoy to shore, and a rescue crew member holding a flare. ...This certificate acknowledges 21 years of service given by James Patten, one of the original 1859 Lifeboat Warrnambool as a boatman and bowman. At the time, all retiring Volunteer lifeboatmen were honoured with this award. It was made as a lithograph that was created by F. W. Strahle at the request of the Department of Lands & Survey, Melbourne, Victoria. During his time of service, James Patten was awarded a medal and certificate by the Royal Humane Society of Australasia for his bravery. Patten and his friend Joseph Lowe, who couldn't swim, were with their friend James Ferrier in a boat on the Hopkins River, Warrnambool, when their boat capsized. Ferrier made it to shore, and Patten tried unsuccessfully to hold onto Lowe and bring him to shore. The event occurred on 18th April 1890. The images on the Certificate show a collage of rescue events performed by the lifesavers; a shipwreck rescue in progress, lifeboat conveying five boatmen using two oars each, and a bowman standing at the bow, a linesman wearing a life jacket and holding a rescue line, a lifesaver ring with images of three sailing ships inside it, a shipwreck near shore, a woman and girl in shallow water, a rescue using a breeches buoy on the lifeline, two rescuers walking towards the survivor, rescue crew wearing waterproof clothing, a rocket machine with a pulley to bring the survivor in a breaches buoy to shore, and a rescue crew member holding a flare. Volunteers at the time received a small payment, or 'retainer'', for their practices and a payment of gratitude for the rescues they attended. Across the years between 1856 to 1979 the combined service in Victoria saved 260 lives. Amazingly, some of the volunteers could not even swim.This certificate shows the State and Local Government's appreciation for the years of service spent by in the endeavour to save lives in peril in and on the local waters in the early 20th Century. The lithographed design depicts the many skills and services performed by the lifesavers of the era.Certificate of Service, unframed, awarded to James Patten on 23rd August 1907, recognising his 21 years of service with the original Warrnambool Life Boat Service as a Boatman and Bowman. Certificate is on rectangular, cream paper, lithographed design, printed and handwritten. Letterhead with the Royal Coat of Arms of the United Kingdom and a French motto. Images depict lifesaving crew, lifeboat, rescue equipment and a rescue in progress. The border is waves inside of frame of looped rope. Signatures of Commissioner of Public Works, Secretary of Public Works, and Engineer in charge of Ports and Harbours, Melbourne. Printed from a lithograph produced by F.W. Strahle on 23rd June 1907.MOTTO: "Dieu Droit Et Mon, Ni Soit Qui Mal y" TREXT: "Certificate granted to James Patten as a mark of appreciation of his esteemed services of 21 years as Boatman and Bowman connected with the Departmental Life-Boat service at Warrnambool - dated the 23rd day of August 1907." SIGNATURES: [Commissioner of Public Works], [Secretary of Public Works], [Engineer in charge of Ports and Harbours Melbourne] "Lithographed at the Dept of Lands & Survey - Melb/ by F.W. Strahle, 23.6.07"flagstaff hill, warrnambool, flagstaff-hill, maritime museum, maritime village, shipwreck-coast, flagstaff hill maritime museum & village, james patten, life-saving, lifesaving, rescue, bravery, drowning, joseph lowe, james ferrier, hopkins river, boat accident, certificate of service, 1890, 1907, bowman, boatman, departmental life-boat service, life-boat service, lifeboat service, august 1907, commissioner of public works, public works, ports and harbours melbourne, lands & survey melbourne, f w strahle, lithograph, 1856-1979, 260 lives saved, victorian volunteers, lifeboatmen, retired lifeboatmen -
Flagstaff Hill Maritime Museum and VillageDrill Press, 1920s-1950s
... The Dawn Ball-bearing Post Drill no. 611 is described in McPherson’s Catalogue as a “drilling machine with adjustable automatic feed, with improved Dawn coupler and ball-bearing thrust’. The heavy design of the flywheel enables it to maintain momentum” and is “fitted with pulleys for belt drive if desired” The hand crank drives an automatic feed to work off a cam-follow system opposite a large wheel. ...The Dawn Ball-bearing Post Drill no. 611 is described in McPherson’s Catalogue as a “drilling machine with adjustable automatic feed, with improved Dawn coupler and ball-bearing thrust’. The heavy design of the flywheel enables it to maintain momentum” and is “fitted with pulleys for belt drive if desired” The hand crank drives an automatic feed to work off a cam-follow system opposite a large wheel. ...This drill once belonged to Goodall and Sons, who were blacksmiths in Terang. The smith was called upon to do a variety of work. In the early 1900s he was often the nearest person to be able to perform an engineer’s services for many miles around. The Dawn Ball-bearing Post Drill no. 611 is described in McPherson’s Catalogue as a “drilling machine with adjustable automatic feed, with improved Dawn coupler and ball-bearing thrust’. The heavy design of the flywheel enables it to maintain momentum” and is “fitted with pulleys for belt drive if desired” The hand crank drives an automatic feed to work off a cam-follow system opposite a large wheel. Made by Dawn Manufacturing Co. Australia 1920-1950. DAWN MANUFACTURING CO. Dawn Manufacturing Co. was founded in Coburg, Melbourne, in 1917 by the four Blake brothers, who were all engineers. After World War I Dawn was supplying drills Australia wide and the company was growing at a healthy rate. During the depression they remained busy, with employees working 60-80 hour weeks. Dawn was contracted to supply vices and clamps to the Australian Defence Department and munitions factory during the World War II. In 1959 the company was taken over by G.N. Raymond Group, then in 1973 the Siddons Ramset Limited acquired Dawn. In December 1991, Dawn became a unit of the United States owned Stanley Works Pty. Ltd. In November 1998 Dawn became 100 per cent Australian owned. HENRY GOODALL & SONS Henry Goodall (1870-1936) was proprietor of garages as H. Goodall & Sons Pty. Ltd., at both Terang (McKinnon and High Streets) and Mortlake (Dunlop Street). His business was in operation in at least in 1916 and perhaps well before, considering the date of the tyre bender and its use for wagons with wooden wheels. It was still in operation in 1953, chasing up debtors in Mount Gambier Court. Amongst the employees of H. Goodall & Sons Pty. Ltd. was Ernie Entwistle, a blacksmith (a soldier who died in 1916 ) and Alfred Hodgetts, radio expert (killed in a fatal accident in 1943, when he was in his early 30s ). Henry Goodall was involved in the community as a Justice of Peace, a deputy coroner, President of the Mortlake Hospital, trustee of the Soldiers’ Memorial Hall, and as a prominent Freemason. He and his wife had two sons (Charles and John) and one daughter (Mrs. Chas. Newton, of Skipton). The drill is locally significant as it was used by a local company in Terang and Mortlake in their blacksmith, wheelwright and garage business. It is an example of the tools of the blacksmiths’ trade in Victoria in the 1920s-1950s.Dawn Ball-bearing Post Drill no. 611, made by Dawn of Melbourne, model no 611. Hand operated drill press. Self-feeding blacksmiths’ drill-press. This drill once belonged to Harry Goodall & Sons, blacksmiths of Terang. Dated 1920s-1950s. Gear ratio 2:1 main drive, 6" diam, 3:1 reduction gear. "Dawn", "Melbourne"flagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, h. goodall & sons of terang, terang blacksmith, h. goodall & sons pty ltd, mortlake, ernie entwistle blacksmith, alfred hodgetts radio expert, charles goodall, john goodall, mrs. chas. newton nee goodall, terang 1900s, warrnambool district 1900s, post drill, blacksmith’s drill, dawn post drill, dawn ball-bearing post drill no. 611, blacksmiths, dawn of melbourne -
Flagstaff Hill Maritime Museum and VillageEquipment - Rocket set, John Dennett, ca. 1860s
... 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...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 Impressed one a shaft "8" A Dennett rocket set in six parts; the rocket head, three shafts (poles) and two rocket-head toting boxes. ...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
... 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...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 On box “ROCKET MACHINE” On quadrant “10” “20” “30” “40” Rocket launcher, named a Rocket Machine, and storage box. ...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 VillageEquipment - Breeches Buoy and Traveller Block, 1860s to 1950s
... 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...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 Government of Victoria Breeches buoy and traveller lock; white canvas breeches (shorts) with lifebuoy ring attached to its waistband, with ropes for attaching it to the traveller block. ...The breeches buoy and traveller block are part of the beach rescue apparatus used by lifesaving crew overseas and in Australia in the 1860s to 1960s. The breeches buoy (or chair bucket or petticoat breeches) were invented by Lieutenant Kisbee by the 1850s. It looks like a pair of canvas shorts with a cork lifebuoy ring attached around the top. The set-up works similar way to a zip wire and allows for two-way travel. 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. This item 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.Breeches buoy and traveller lock; white canvas breeches (shorts) with lifebuoy ring attached to its waistband, with ropes for attaching it to the traveller block. Wooden traveller block has double brass inline sheaves and brass rollers on each cheek of the block, and each shell is scored for the strop. The thimble attached to the strop has a wooden slat for quick release of the breeches buoy. The ropes comprise of two equal lengths of rope that have been bunched together to form two loops, then bound together just below the loops, while the four hanging ends are looped around the lifebuoy, equally spaced, with each end finished in an eye-splice. The apparatus is suspended by the loops at the top and attached to the traveller block, which has a quick release device.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, government of victoria -
Federation University Historical CollectionUnknown - Object, Allan Mine Cage Safety Brake, c1873, c1873
... pulley. Also, the hinged ‘lids’; designed to protect miners trapped in a braked cage from falling rope, and to enable rescue of the miners. This model was presented to The Ballarat School of Mines Council in November 1876. This model was shown at the Smeaton Show in November 1874, Ballarat School of Mines Museum from 1876, and examined by the 1879 Victorian Board of Inquiry (Pg 15 of FedUni Catalogue 3437) From the Argus of 13 November 1874: At Smeaton Show, Robert Allan of Ballarat won 1st prize for a Model of a Mining Cage, a Butter working machine, a Cheese press and a Curd Mill. ...pulley. Also, the hinged ‘lids’; designed to protect miners trapped in a braked cage from falling rope, and to enable rescue of the miners. This model was presented to The Ballarat School of Mines Council in November 1876. This model was shown at the Smeaton Show in November 1874, Ballarat School of Mines Museum from 1876, and examined by the 1879 Victorian Board of Inquiry (Pg 15 of FedUni Catalogue 3437) From the Argus of 13 November 1874: At Smeaton Show, Robert Allan of Ballarat won 1st prize for a Model of a Mining Cage, a Butter working machine, a Cheese press and a Curd Mill. ...A mining safety cage was used in a mine lift. It was fitted with mechanisms to prevent the cage from dropping if the lifting rope broke. In the 1870s in Victoria, deaths and injuries from falling cages in vertical shafts of gold mines were a major problem. The inventor of this safety cage was Robert Allan, a machinery maker of Creswick Rd, Ballarat. He said his cage featured a ‘dissolving’ fulcrum. Others called it an eccentric (off centre) system. Note the pair of clutch levers designed to grab the side guides if tension ceases in the suspending rope from the poppet head pulley. Also, the hinged ‘lids’; designed to protect miners trapped in a braked cage from falling rope, and to enable rescue of the miners. This model was presented to The Ballarat School of Mines Council in November 1876. This model was shown at the Smeaton Show in November 1874, Ballarat School of Mines Museum from 1876, and examined by the 1879 Victorian Board of Inquiry (Pg 15 of FedUni Catalogue 3437) From the Argus of 13 November 1874: At Smeaton Show, Robert Allan of Ballarat won 1st prize for a Model of a Mining Cage, a Butter working machine, a Cheese press and a Curd Mill. By 1878 an Allan Safety-Cage was in operation in the Number 6 shaft of the Band and Albion Consols mine in Ballarat. This cage was judged the best inspected by the Victorian Board of Inquiry by 1879, p. 39.Mining was a big industry in Ballarat in the late 1800s and a lot of deaths were recorded because of mining accidents, the development of the mining safety cage brake limited the deaths and injuries from falling cages in vertical shafts. The model also has links to the Ballarat School of Mines, being presented to the council in 1876. Ballarat School of Mines is the oldest Technical School in Australia and is a predecessor of Federation University. The model is significant to Ballarat's mining history.Model of a mine safety cafe. A grey painted wooden frame with metal model of cage and safety brake system. When tension ceases in rope a pair of crutch levers grab strongly onto the wooden guide strips which run down the sides of a vertical shaft. This safety cage was discussed in "Safety Mining Cages. Report of the Board of Enquiry on Safety Cages 1878-9; together with proceedings of the Board and Appendices".safety cage, mine cage safety brake, robert allan, model, safety cage model, machine maker, millwright, mining, gold mining, tools, equipment, victorian board of inquiry -
Geoffrey Kaye Museum of Anaesthetic HistoryMachine - Geoffrey Kaye's spirometer, Dr Geoffrey Kaye
... There is an elongated U-shaped glass tube affixed to a wooden plank to the right of the canister, beneath the pulley. Machine Geoffrey Kaye's spirometer Dr Geoffrey Kaye ...This spirometer, built by Geoffrey Kaye for demonstration purposes, features a large, rectangular panel of wood with a wooden needle and a dial numbered from 000 to 3000 in increments of 100, which would have measured a patient's lung capacity as they breathed into a tube which is no longer present. The panel is attached to a wooden frame, which also supports a red Stenco brand pulley attached to a metal canister and a counterweight. There are two taps on the bottom of the canister. There is an elongated U-shaped glass tube affixed to a wooden plank to the right of the canister, beneath the pulley.spirometer, spirometry, machine, diagnostic machine, diagnostic machinery, respiration, lung capacity, tidal lung capacity, geoffrey kaye -
Puffing Billy RailwayTwin Cylinder Engine - Belliss & Morcom Ltd, Patent Self Lubricating Engine , Birmingham, 1926
... Belliss & Morcom Ltd, Patent Self Lubricating Engine , Birmingham It was used to operate the Fairfield No. 2 Mill Paper Making machine by a rope and pulley drive....Puffing Billy Railway 1 old monbulk road Belgrave yarra-valley-and-the-dandenong-ranges Belliss & Morcom Ltd, Patent Self Lubricating Engine , Birmingham It was used to operate the Fairfield No. 2 Mill Paper Making machine by a rope and pulley drive. Historic - Industrial Twin Cylinder Engine - stationary engine used to operate the Australasian Paper and Pulp Co Ltd. - Fairfield No. 2 Mill Paper Making machine by a rope and pulley drive. twin cylinder engine stationary engine industrial stationary engine puffing billy fairfield no. 2 paper mill australian paper manufactures ltd belliss & morcom Belliss & Morcom Ltd, Patent Self Lubricating Engine , Birmingham Twin Cylinder Engine - stationary engine made of steel, wrought iron, brass Twin Cylinder Engine - Belliss & Morcom Ltd, Patent Self Lubricating Engine , Birmingham Belliss & Morcom Ltd. ...Belliss & Morcom Ltd, Patent Self Lubricating Engine , Birmingham It was used to operate the Fairfield No. 2 Mill Paper Making machine by a rope and pulley drive.Historic - Industrial Twin Cylinder Engine - stationary engine used to operate the Australasian Paper and Pulp Co Ltd. - Fairfield No. 2 Mill Paper Making machine by a rope and pulley drive.Twin Cylinder Engine - stationary engine made of steel, wrought iron, brassBelliss & Morcom Ltd, Patent Self Lubricating Engine , Birminghamtwin cylinder, engine, stationary engine, industrial stationary engine, puffing billy, fairfield no. 2 paper mill, australian paper manufactures ltd, belliss & morcom -
Wangaratta High SchoolWHS Plaque, 1992
... WANGARATTA HIGH SCHOOL GYMNASIUM The Following Pieces Of Equipment Were Donated By THE PREFECTS OF 1992 HACK SQUAT MACHINE WALL PULLEYS ABDOMINAL CRUNCH BENCH ADJUSTABLE BENCH...Wangaratta High School 17-49 Edwards Street Wangaratta high-country WANGARATTA HIGH SCHOOL GYMNASIUM The Following Pieces Of Equipment Were Donated By THE PREFECTS OF 1992 HACK SQUAT MACHINE WALL PULLEYS ABDOMINAL CRUNCH BENCH ADJUSTABLE BENCH Rectangular wooden plaque with a golden brushed metal plate on the front and engraved text reading: WHS Plaque ...Rectangular wooden plaque with a golden brushed metal plate on the front and engraved text reading:WANGARATTA HIGH SCHOOL GYMNASIUM The Following Pieces Of Equipment Were Donated By THE PREFECTS OF 1992 HACK SQUAT MACHINE WALL PULLEYS ABDOMINAL CRUNCH BENCH ADJUSTABLE BENCH -
Yarrawonga and Mulwala Pioneer MuseumGrain Grister, 1925
... Wooden delivery /storage box on top of metal Grister with three cogs and flywheel [approx. 30 cm diameter] and metal grinding cylinders [rollers] with horizontal grooved lines all around .This is bolted to a wooden stand [painted green] which has a wooden box to receive the crushed grain Rollers are adjustable .Machine driven by flat leather belt on a pulley from a small stationary engine ...J Buncle Parkside Ironworks North Melbourne Wooden delivery /storage box on top of metal Grister with three cogs and flywheel [approx. 30 cm diameter] and metal grinding cylinders [rollers] with horizontal grooved lines all around .This is bolted to a wooden stand [painted green] which has a wooden box to receive the crushed grain Rollers are adjustable .Machine driven by flat leather belt on a pulley from a small stationary engine Grain Grister J Bruce & Son ...grinding grainWooden delivery /storage box on top of metal Grister with three cogs and flywheel [approx. 30 cm diameter] and metal grinding cylinders [rollers] with horizontal grooved lines all around .This is bolted to a wooden stand [painted green] which has a wooden box to receive the crushed grain Rollers are adjustable .Machine driven by flat leather belt on a pulley from a small stationary engine Metal plaque attached to top of delivery box. J Buncle Parkside Ironworks North Melbournegrain, grister, farming, machinery -
Maldon Vintage Machinery Museum IncPulley Stand
... Flat belt pulley stand with multiple pulleys. Set up for driving multiple machines. Present power source is an electric motor. ...Maldon Vintage Machinery Museum Inc Vincents Road Maldon goldfields Trades Carpentry Metal working Flat belt pulley stand with multiple pulleys. Set up for driving multiple machines. Present power source is an electric motor. ...Flat belt pulley stand with multiple pulleys. Set up for driving multiple machines. Present power source is an electric motor. In working order, unpainted.trades, carpentry, metal working -
Mont De LanceyTool - Pulley Block, Makers Patent Snatch, Unknown
... An antique machine made forged steel pulley block with a hook at the top which moves sideways. ...Mont De Lancey 71 Wellington Road Wandin North yarra-valley-and-dandenong-ranges Pulleys Tools Lifting equipment Pulley blocks Steel MAKERS PATENT SNATCH An antique machine made forged steel pulley block with a hook at the top which moves sideways. ...An antique machine made forged steel pulley block with a hook at the top which moves sideways. It has a slot on the cylindrical section for the rope or chain. It is an old farm tool from the 19th or 20th century.MAKERS PATENT SNATCHpulleys, tools, lifting equipment, pulley blocks, steel -
Flagstaff Hill Maritime Museum and VillageMachine - Steam Engine, Tangyes engineering, Mid-1880s
... machine tools...hydraulic rams...hydraulic pumps...steam pumps...differential pulleys...Mill type steam engine...4 inch cylinder...Weston’s differential pulley...Flagstaff Hill Warrnambool Maritime Village Maritime Museum Flagstaff Hill Maritime Museum and Village Shipwreck coast Great Ocean Road machine invention engine steam steam engine horizontal steam engine Tangyes horizontal steam engine stationary steam engine single cylinder steam engine manufacturing farming pumps lifting equipment engines machine tools hydraulic rams hydraulic pumps steam pumps differential pulleys Mill type steam engine 4 inch cylinder Weston’s differential pulley Thomas Aldridge Weston 1862 International Exhibition in London Brunel SS Great Eastern Cleopatra’s Needle Forth Road Bridge Cornwall House Collins Street Melbourne agricultural machinery industrial machinery Allspeeds dairy pump Richard Tangye & Brothers James Tangye and Brothers Tangye Brothers and Price Tangye Brothers Tangye Brothers & Holman Tangyes Ltd. ...This Tangye B-size, single-cylinder, horizontal steam engine was likely manufactured in England around the mid-1880s. It was distributed by Melbourne machinery merchants Cameron & Sutherland, which also operated in Bendigo and Ballarat. A local cheese maker once used the engine to drive factory equipment. It was later donated to the Warrnambool Technical School, which then donated it to Flagstaff Hill to add to its historical steam engine collection. Between its manufacture and its donation to Flagstaff Hill, the governor had been replaced by the current Pickering governor. This engine design was very popular in the late 19th and early 20th centuries. When connected and powered up, the engine could drive an overhead line shaft via a flat belt off its flywheel. The line shaft would then drive the machinery via flat belts. It could drive virtually any type of machinery, such as water and sewerage pumps, mine elevators, winches, cranes, metal forges, air blowers, and marine machinery. This engine features a mechanical governor, which controls the speed of the engine regardless of whether it is under load. It also has a water pump built into the valve rod, which is used to supply the boiler with water. Steam enters the cylinder via a slide valve and applies pressure to the piston; it is like a modern internal combustion engine, but in the case of the steam engine, the pressure is exerted in turn on either side of the piston. In other words, the connecting rod is pushed by steam via the piston and piston rod and then pulled back again by steam pushing on the opposite side of the piston. Thus, power is exerted almost continuously, except at the end of each piston stroke, when it reverses direction. In the 1880s, many local butter and cheese manufacturers installed Tangye steam engines to power their machinery. A comprehensive article in the Gippsland Mercury in September 1889 extolled the magnificence of the Farnham Butter Factory in Dennington, Warrnambool, and described how one Tangye engine was used to drive several machines in the cheese- and butter-making processes. A report in the Warragul Guardian in December 1890 notes that the newly opened Warrnambool Butter Factory used a Tangye steam engine to pump water from a 60-foot well. Tangye: Richard Tangye (1833–1906) and four of his brothers—James, Joseph, Edward, and George—were the sons of Joseph Tangye, a Quaker Cornish miner. In 1857, they founded the engineering firm Richard Tangye & Brothers in Birmingham, UK. In 1860, the firm became Tangye Brothers and moved to Cornwall Works in Birmingham. The business encouraged inventors to join the company and develop their patents there, as happened with Weston’s differential pulley block, invented by the Englishman Thomas Aldridge Weston in 1854. Tangye bought the patent in 1858, giving the firm the sole right to manufacture it. The design received a medal for “original application, practical utility and success” at the 1862 International Exhibition in London. Also in 1858, the Tangye firm was commissioned by Brunel’s shipping company to manufacture hydraulic lifting jacks, or rams, to launch the steamship SS Great Eastern. The success of this project brought favourable attention to the firm, and it became involved in other notable projects, including the erection of Cleopatra’s Needle in London in 1878 and work on the Forth Road Bridge in Scotland. The firm underwent several name changes over the years, including James Tangye and Brothers (1857), Tangye Brothers and Price (1859), Tangye Brothers (1860), Tangye Brothers & Holman (1876), Tangye Brothers (by 1878), Tangye Ltd. (1881), and then simply Tangye. Its machinery and equipment were exported worldwide. In 1884, a branch with showrooms, offices, and a warehouse was opened in Melbourne at Cornwall House, Collins Street West. The firm was well known for producing high-quality machinery for agriculture and industry. Even today, new Tangye machinery is available for a subsidiary of Allspeeds. An extensive account of the firm’s history, names, inventions, and further references is available in Grace’s Guide, which also includes references to and diagrams of the Tangye horizontal steam engine. The horizontal steam engine was made by the well-known engineering firm Tangye, known for its high quality of manufacture. It was an important development in machinery because it helped improve productivity. Engines of this type are still used in some parts of the world today. This engine is a good example of a late 19th-century steam engine used in industry and agriculture and adapted for many different purposes. It is also important locally because it was connected to a local cheese making business and part of the thriving western district dairy industry. It may have been one of the Tangyes engines used at the Farnham butter factory or the Warrnambool Butter Factory, which was reported to be one of the most important in the Colony. It is also connected to the Warrnambool Technical School, established in 1968. Steam engine: stationary Tangye Size B, single-cylinder, horizontal Mill type steam engine. It has a 4-inch diameter cylinder with an 8-inch stroke. The body is painted green, and the Pickering governor is red. It was manufactured in Birmingham, England, in accordance with Tangye's Patent 238930, and distributed by Cameron and Sunderland, Melbourne, in the mid-1880s. TANGEYS PATENT BIRMINGHAM B SIZE 238930 CAMERON & SUTHERLAND MELBOURNE THE PICKERING PORTLAND . GOVERNOR . CONN. U.S.A.flagstaff hill, warrnambool, maritime village, maritime museum, flagstaff hill maritime museum and village, shipwreck coast, great ocean road, machine, invention, engine, steam, steam engine, horizontal steam engine, tangyes horizontal steam engine, stationary steam engine, single cylinder steam engine, manufacturing, farming, pumps, lifting equipment, engines, machine tools, hydraulic rams, hydraulic pumps, steam pumps, differential pulleys, mill type steam engine, 4 inch cylinder, weston’s differential pulley, thomas aldridge weston, 1862 international exhibition in london, brunel, ss great eastern, cleopatra’s needle, forth road bridge, cornwall house, collins street melbourne, agricultural machinery, industrial machinery, allspeeds, dairy, pump, richard tangye & brothers, james tangye and brothers, tangye brothers and price, tangye brothers, tangye brothers & holman, tangyes ltd., tangye, richard tangye, james tangye, joseph tangye, edward tangye, george tangye, cornwall works, birmingham, pickering governor, pickering portland connecticut usa, 19th century, dairy plant, steam power, tangye's patent 238930, tangye b size engine, cameron & sutherland, machine merchants, 1880s, mid-1880s, cheese manufacturer, butter manufacturer, diary industry, warrnambool technical school, belt driven machinery, agriculture, mechanical governor, farnham butter factory, warrnambool butter factory
