Showing 369 items matching "brass instruments"
-
Mont De Lancey
Scales, W & T Avery Ltd
W & T Avery was listed as a Private Limited Company in 1891 and a Public Limited Company in 1894. Set of Avery measuring scales, with two round brass pans. Has cross bar and chains. Mounted on rectangular wooden base with pull out drawer with brass handles. balances, weighing instruments -
Mont De Lancey
Weights, Troy
... that originated in 15th-century England. weights weighing instruments ...Troy weight is a system of units of mass that originated in 15th-century England.Assorted ounce brass apothecaries weights x 6 - 3 oz, 2 oz, 1 oz 1/2 oz. on red felt stand.weights, weighing instruments -
Bendigo Military Museum
Document - FRAMED, WW2, 1945
Information title on document. "Instrument of Surrender" Signed by "Commander 22 Base Force/ Dutch Borneo Major General/ Commander Seventh Australian Division". Document - white coloured paper, copy of original document. Black ink print with five black and white photographs on right side Australian Coat of Arms at top of document. Frame - timber, black gloss paint, shaped moulding, glass front and timber backing with brown paper finish, metal clips and hanging wire. Two brass name plaques adhered to glass front lower left and lower right corners with information. Framers stamp on backing paper.Brass plaques - etched with black ink print. Left - "PRESENTED TO MITIAMO/ EAST LODDON RSL/ BY PM 6565 A.B. BRYAN O'BRIEN" Right - "THIS REMAINS TGHE PROPERTY OF THE MITIAMO/ EAST LODDON RSL". Framers stamp - Black ink "GALLERIA/ FRAMING & PRINTS/ Cnr HIGH 7 OAK STREETS/ GOLDEN SQUARE 3555/ Ph: (054) 47 0484. framed accessories, document, ww2, japanese surrender -
The Ed Muirhead Physics Museum
Instrument - Artillery director (No 6 Mk II with tripod), c1924
Possibly related to the range-finding equipment sent from England for dismantling during the 1940s so University of Melbourne Physics staff could develop their own equipment. Related to object 463.2Green painted brass director mounted on a grey metal base plate. Secured to a wooden tripod with coated copper wire cord linking tripod legs.Theodolite body engraved with: the broad arrow on top, and on side with 'DIRECTOR No 6 MK II / COOKE TROUGHTON & SIMMS LTD / 1924 / No 1126'artillery instruments, wwii artillery, no 6 director mk ii, optical equipment, cooke troughton & simms -
The Ed Muirhead Physics Museum
Instrument - Beam Balance, with wooden box
Beam balance made of brass, stainless steel with “ tortoise shell pattern” decoration. Enclosed in display case with glass windows and sitting on four legs for levelling. Made by F. Sartorius, Gottingen. Plaque on front of box: “F.Sartorius Werkstatte fur Wissenschaftliche Instrument Gottingen”. Plaque on balance: “Patent F.Sartorius Gottingen No. 5936” -
The Ed Muirhead Physics Museum
Instrument - Brass Switch
... and contact Brass switch Set of 3 Instrument Brass Switch ...Short circuit and contact Brass switch Set of 3Inscribed with H W Sullivan Ltd London Item a Inscribed on base with No 5306 painted on base with 5222 Item b Inscribed on base with No 5304 Painted on base with 5223 Item c Inscribed on base with No 5274 Painten on base with 522c -
The Ed Muirhead Physics Museum
Electrometer, string T.H. Laby
Electrometer with black metal rectangular base and brass instrumentation. Base stands on three base legs. Optical telemicroscope is missingPlaque: “The Cambridge Scientific Instrument Co. Ltd Cambridge England No. 8626” -
Linton and District Historical Society Inc
Photograph, Linton Brass Band, Hospital Sunday, Recreation Reserve, 1910
Black and white image of seventeen men dressed in uniform and holding instruments. One of the men has a small drum sitting in front of him. A man and a woman are visible in the background, behind the band members, sitting on the ground. Further behind them is a post and rail fence with three men standing behind it and a child sitting on the top railing of the fence. Image has been mounted on dark grey card.Text, handwritten, front: ABOUT 1910 LINTON BRASS BAND W. TODD BANDMASTER / Mr TRENGROVE DRUM MAJOR. Text, handwritten, reverse: BACK ROW: GEO PRESTON PADDY TODD / BILLY TODD Mr J SHEPHERD / WILLIAM TODD BAND MASTER / MILTON TODD Mr TRENGROVE DRUM / MAJOR / (HOLDING BATON) / Mr GEO BENNETT Mr ANGUS / DIDDY POWELL / FRONT ROW: ALBERT SIMPER / SOMER DONALDSON ERN CHING / CHARLIE ROBERTS DRUMMER / ARTHUR POWELL PERC ROBERTS J BERSEY / HOSPITAL SUNDAY RECREATION RESERVE / ABOUT 1910.brass bands, musicians, geo preston, paddy todd, billy todd, mr. j. shepherd, william todd, milton todd, mr. trengrove, geo bennett, mr. angus, diddy powell, albert simper, somer donaldson, ern ching, charlie roberts, arthur powell, perc roberts, j. bersey, linton -
Linton and District Historical Society Inc
Photograph, Beaufort Brass Band Playing at Centenary of St Paul's Church of England, Linton, 1962, 1962
Colour photograph showing group of men with musical instruments seated in front of St Paul's Church hall."Centenary St Paul's Linton Beaufort Brass Band 1962".st paul's church of england linton. centenary 1962, beaufort brass band, parish hall -
Clunes Museum
Instrument - CORNET, CASE AND ACCESSORIES
... brass musical instrument... to the band. brass musical instrument clunes brass band EN ARGENT ...This instrument was played in many international competitions outside of Australia. Locally this cornet was played by Mr. Stewart Dunn of Angus Street, Clunes, during the 1930's Mr. Roberts played with the Clunes Brass Band for 35 years and in 1908 was presented with a hot water kettle in recognition of his service to the band. BRASS CORNET, BLACK WOODEN CASE AND CORNET ACCESSORIES, (9 Pieces in Total) BELONGED TO MR. JOSEPH TIPPET ROBERTS, DUKE OF EDINBURGH HOTEL, FRASER STREET, CLUNESEN ARGENT ANTOINE COURTOIS & MILLE MILLE SEN. FACTEUR DU CONSERVATOIRE NATIONAL 88 RIE DES MARAIS ST MARTIN PARIS 1ST. PRIX ECT.brass musical instrument, clunes brass band -
Bendigo Historical Society Inc.
Instrument - JAMES NORTHCOTT COLLECTION - CORNET
a. Black wooden case, brass handle on top of lid, brass hinges and lock, lined with black ( faded) velvet. B. Cornet, engraved with leaves and flowers. Engraved on top ' F. Besson, Brevetee, 198 Euston Road, London.' On bell ' Presented by the citizens to James Northcott Bandmaster of the Sandhurst Volunteer Band in recognition of his musical abilities. Sandhurst Dec. 8 1871. Cornet box contains 7 additional parts of the Cornet. ( see photo )F. Besson, Brevetee, 198 Euston Road, Londonmusical instruments, wind, cornet ( besson ), james northcott, sandhurst, volunteer band, bendigo, music, presentation -
The Ed Muirhead Physics Museum
Resistance box
Wooden box with brass top and 24 knobs (22 larger and 2 smaller) on the right-hand side. In addition there are two extra knobs on the right side of the top, as well as two removable oval access panels with handles on each of the ends.Stamped on top of box: a coat of arms 'HARTMANN OF BRAUN A/M' 'RICHTIG BEI / 20 / GRAD CELSIUS' increments for measurement On front side: Sticker labelled 'NATURAL PHILOSOPHY LABORATORY / NO 7 / UNIVERSITY OF MELBOURNE' Stamped on end of metal top: 'No. 2665'hartmann of braun, resitance decade box, resistance box, electical instruments, frankfurt, natural philosophy laboratory -
City of Greater Bendigo - Civic Collection
Instrument - Surveyors Cross
... Bendigo Surveying Architects' / N. H. SEWARD / Instruments Brass ...Sighting compass / surveyors compass used in conjunction with theodolite for accurate readings of angles between designated visible points in the horizontal and vertical planes.Brass surveyors cross with original box. Used in conjunction with theodolite to take compass readings. Architects' / N. H. SEWARD / Instrumentscity of greater bendigo surveying -
Broadmeadows Historical Society & Museum
Instrument - School Bell
19/20th CenturySocial Significance - Used at SchoolSchool Bell, Brass with Wooden Handle repaired cracks with segment welded into placeeducation, school -
Moorabbin Air Museum
Instrument (Item) - Escape Compass Fly Buttons
-
Flagstaff Hill Maritime Museum and Village
Instrument - Clock Parts, Bef. 01-06-1878
The clock parts were discovered in 1980 by Julie Wilkins, a Victorian scuba diver who had already experienced more than 500 dives in Australia and overseas. She was holidaying in Peterborough, Victoria, and looking forward to discovering more about the famous Loch Ard ship, wrecked in June 1878 at Mutton Bird Island. The fast Glasgow-built clipper ship was only five years old when the tragedy occurred. There were 54 people on board the vessel and only two survived Julie's holiday photograph of Boat Bay reminds her of her most memorable dive. Submerged in the calm, flat sea, she was carefully scanning around the remains of the old wreck when, to her amazement, a gold coin and a small gold cross suddenly came up towards her. She excitedly cupped them in her hands and then stowed the treasures safely in her wetsuit and continued her dive. She soon discovered a group of brass carriage clock parts and some bottles of champagne. It was a day full of surprises. The items were easily recognisable, without any build-up of encrustations or concretion. Julie secretly enjoyed her treasures for twenty-four years then packed them up for the early morning train trip to Warrnambool. After a short walk to Flagstaff Hill Maritime Museum and Village, her photograph was taken as she handed over her precious find. She told her story to a local newspaper reporter, lunched a café in town then took the late afternoon train home. Her generous donation is now part of a vast collection of Loch Ard shipwreck artefacts, including the gold watch and the Minton Majolica model peacock. This group of brass clockwork parts is incomplete. The pieces were in the ocean for over 100 years before Julie recovered them from the Loch Ard wreck. Their size would suit the works of a carriage clock, with a mainspring and weight to power the clock movement, a pendulum to measure the clock's speed, arbours, posts, pillars and at least one other plate. They would have been mounted inside a protective case with a small door to easily access the clock face for setting the time and accessing the key's winding hole. The clock cases were usually made from decorative gilt brass with a glass front and a carrying handle. The parts include a weighted second hand with a decorative four-pronged finish at one end, a rounded weight at the other, and a hole for attaching it to the clock face. The gear teeth profiles are ‘cycloidal’, an arch shape with vertical sides, which is common for antique clocks. Modern clockworks have ‘involute’ teeth with sloping sides and a squared-off top. The brass carriage clock parts are an example of a mechanical clock produced in the 1870s. The clock's design is a part of the chain of technological improvements in methods for timekeeping. Its cycloidal gear teeth were the forerunner of the more modern involute gears. The group of clock parts includes a weighted hand or arm for signifying the seconds. This feature was uncommon in portable Victorian-era clocks. The clock parts are also significant for their association with the ill-fated sailing ship Loch Ard, wrecked in 1878. The travelling clock or officer’s clock may have been part of the cargo destined for the 1880 Melbourne Exhibition, or the personal possession of one of the people on board the vessel. Brass clockwork parts from a mechanical clock, sixteen pieces. Parts comprise a plate, large gears or wheels, small pinions or wheels with fine teeth, wheels with cogs, and a weighted second hand. The parts were from a carriage clock ca. 1878. They were recovered from the wreck of the sailing ship Loch Ard.flagstaff hill maritime museum and village, warrnambool, great ocean road, shipwreck coast, loch ard, wreck of the loch ard, 1878, mutton bird island, peterborough, scuba diver, 1980s, shipwreck artefact, relic, clock, mechanical, clock parts, time, timekeeper, horology, chronometry, cogs, time keeping device, scientific instrument, chronometer, john harrison, longitude, carriage clock, coach clock, portable clock, travelling clock, travel clock, traveller’s clock, officer’s clock, weighted second hand, victorian era, cycloidal gear teeth, brass clock, julie wilkins -
Bendigo Military Museum
Instrument - Heliograph Mk V Training Aid - circa 1912, 1912
The Heliograph MkV is a fascinating piece of historical surveying and communications equipment. It was primarily used for visual signaling by reflecting sunlight with a mirror to send coded messages over long distances. This method was primarily useful in remote areas where other forms of communication were not available. The MkV model, specifically, was widely used by the British Army and other military forces from around 1906 until the mid 1960s. It remained in use with the Australian Army Survey Corps until the mid 1980s. The device typically included a 5 - inch mirror and was often mounted on a tripod for stability. Initially the instrument was used to communicate between survey stations using Morse code to coordinate their activities. Later when better forms of communication were available they were used for precise angle alignment where the sunlight reflection from the mirror was targeted between the survey stations to give very accurate results. The MkV was relatively light weight and portable, making it ideal for use in the field. It could be setup and adjusted quickly. The heliograph had an adjustable mirror that could be tilted to reflect sunlight towards a distant receiver. Surveyors could align the mirror using a sighting device. Whilst it was primarily used by the Military it was also used in civil surveying particularly in the remote areas of Australia. This instrument was used as a training aid to help teach surveyors at the Royal Australian Survey Corps School of Military Survey. Catalog item No 2009 is a tripod that was used to mount the Heliograph whilst being used for surveying.A Heliograph containing two mirrors with brass surrounds mounted on a wooden board as a Training Aid. Item has additional parts attached to the base board."Heliograph Mk V Training Aid"royal australian survey corps, rasvy, fortuna, army survey regiment, army svy regt, asr -
Bendigo Historical Society Inc.
Photograph - BRASS BAND, 1899
Sepia Photograph of Brass Band consisting of 31 members with musical instruments in uniform plus 2 others in suits with bow ties & a top hat. Possibly the Borough Band, Markings read 'H.J.G. Biggs Health Inspector'. 'Pencil marks 1899'organization, club/society, community, eaglehawk, brass band -
Flagstaff Hill Maritime Museum and Village
Instrument - Hourglass
An hourglass or sandglass is an instrument for measuring a defined time and can be used perpetually by simply turning it over immediately the top bulb empties. The clear blown glass is shaped into two equal sized bulbs with a narrow passage in the centre and contains uniform sized sand or glass particles in the lower bulb. The width of the neck regulates the constant flow of the particles. The glass is held in a stand with top and bottom of equal shape and size. Hourglasses can measure an infinite variety of time by gauging the size of the particles, the shape and size of the bulbs and the size of the passage between the bulbs, thus measuring hours or minutes or even seconds. Generally an hourglass sits between discs of wood at the ends, which are joined by long wooden spindles between the ends and tightened by screw caps. The length of time can be adjusted by adding or removing sand particles. The use of the marine sandglass (or hourglass) has been recorded in the 14th century in European shipping. A one minute sandglass was used in conjunction with the ship’s log for ‘dead reckoning’, (see below) that is, for measuring the ship’s speed through the water. They were also used to regulate ringing the ship’s timetable; for example a 4 hour sandglass was used for the length of the sailors’ watch, and a half hour timer for taking of readings for the ship’s log; the ship’s bell would be rung every half hour. It was usually the role of the cabin boy to watch and turn the sandglasses over at the exact time of them emptying their upper chambers and to ring the ship’s bell. Hourglasses have been used historically for many hundreds of years. Some have been used for timing church sermons, in cooking, in industry and at sea. Even today they are used for measuring the cooking time of eggs and timing a player’s turn in games such as Boggle and Pictionary. The sandglasses at sea were gradually replaced in the late 1700’s to early 1800’s by the more accurate chronometers (marine clocks) when they became reliable instruments. DEAD RECKONING (or Deduced Reckoning) Dead reckoning is the term used to describe the method of calculating the ship’s position from its speed and direction, used in early maritime travel, mostly in European waters. Both the (1) speed and the (2) direction of travel were recorded on a Traverse Board at half-hourly intervals during a helmsman’s watch of 4 hours. The navigator would record the readings in his ship’s log, plot them on his navigational chart and give his updated course directions to the next helmsman on watch, along with the cleared Traverse Board. This was a very approximate, but none-the-less helpful, method of navigation. The wooden Traverse Board was a simple pegboard with a diagram of a compass with eight peg holes along the radius to each of the compass points, plus a grid with ascending half hours in the left column and increasing ship’s speed in knots in a row across the column headings, with a peg hole in each of the intersecting cells. A number of wooden pegs were attached to strings on the board. By placing one peg consecutively in the direction’s radius hole, starting from the centre, and the speed holes when the half hourly reading was taken, a picture of speed and direction for the whole 4 hour watch was created. (1) To measure the ship’s speed a one minute hourglass timer was usually used to measure the ship’s speed through the water and help to calculate its longitude. A rope, with knots at regular standard intervals and a weight such as a log at the end, would be thrown overboard at the stern of the ship. At the same time the hourglass would be turned over and a seaman would start counting the number of knots on the rope that passed freely through his hands as the ship travelled. When the timer ran out the counting would be stopped. A timer of one minute (one-sixtieth of an hour), knots spaced one-sixtieth of a nautical mile apart, and simple arithmetic easily gave the speed of the ship in nautical miles per hour ("knots"). This would be recorded every half hour. The speed could however be inaccurate to the travel being affected by ocean currents and wind. (2) To calculate the ship’s direction a compass sighting would be recorded each half hour.Marine hourglasses or sandglasses were used from around the 14th to 19th century during the time of sailing ships. This hourglass is representative of that era, which is during the time of the colonisation of Australia. Hourglass or sandglass; an instrument used to measure time. Two equal sized clear glass bulbs joined with a narrow passage between them, containing equal sized particles of sand grains in lower bulb. Glass sits in a brass collar at each end, in a frame comprising 3 decorative brass columns or posts, each attached top and bottom, using round screw-on feet, to round brass discs. Disc have Roman numerals for the numbers 1 - 12 pressed into their inner surfaces and hieroglyphics on the outer surfaces. Roman numerals on inner surface of discs " I II III IV V VI VII VIII IX X XI XII " Hieroglyphics impressed on outer surface of discsflagstaff hill, warrnambool, shipwrecked coast, flagstaff hill maritime museum, maritime museum, shipwreck coast, flagstaff hill maritime village, great ocean road, horology, hourglass, hour glass, sandglass, sand glass, timing instrument, dead reckoning, deduced reckoning, finding latitude at sea, sandglass with hieroglyphics and roman numerals, hourglass with hieroglyphics and roman numerals, brass hourglass -
Warrnambool and District Historical Society Inc.
Instrument - Microscope, Microscope - J Aitken, c. 1850
This microscope belonged to James William Manifold Aitkin (1835-1905) who was born in Tasmania and came to Warrnambool in 1852. He was a shopkeeper, produce merchant and flour miller who came to live at the property of Carracoorte, Grasmere in the late 1880s. He was a member of the Warrnambool Municipal Council from 1861 to 1868 and was Chairman of the Borough in 1863 when Warrnambool was declared a town and an early Mayor. The microscope was an improved model of a design by Benjamin Martin, an 18th century instrument maker considered one of the greatest designers and manufacturer of microscopes of his time. This microscope is of great significance because: 1. It is a beautiful object with high antiquarian and scientific interest 2. It has strong local significance as it belonged to James William Manifold Aitkin, a prominent Warrnambool and district businessman and farmer 3. It has social significance as it demonstrates the interest in natural history by the more affluent and educated men of the time. This microscope is in a polished wooden box with a metal lock (no key). The microscope is an English Martin Improved drum microscope (c. 1850) and made of brass. Inside the box there are two divisions, one to house the microscope. The other has a drawer containing six slide samples made of ivory or bone and five glass slides (with the listed material missing) and five other small items. On top of the drawer is a section for the microscope attachments contained in ten small inserts. The ten attachments are made of brass. There are also six items not in any particular inserts. There are two small slots for the pincers and slides etc. The only writings are the names and information on the slidesjames aitkin, microscope, benjamin martin, benjamin martin microscope, warrnambool -
Linton and District Historical Society Inc
Photograph, George McCormack in band uniform
Black and white photograph of a young man wearing decorated uniform with helmet, holding musical instrument."George McCormack".george mccormack, brass bands, musicians -
Flagstaff Hill Maritime Museum and Village
Instrument - Scale, George Salter & Co, ca. 1886
There were at least three 1880s vessels named Lady Loch, all built in Victoria; a river launch (ca 1884 to ca 1916, originally named Lady of the Lake), a steamer ferry (1884 to 1920s), and a government lighthouse tender steamer HMV Lady Loch (1886 to 1962). The spring balance scale was part of the equipment on the HMV Lady Loch. The scale was made by the renowned company Salter Weighing Machines in the United Kingdom, to Silvester's patent design. Salter Weighing Machines, Britain, began making spring scales in the 1820s. In 1908 Salter opened up an Australian branch named Salter Scales Pty. Ltd. The scale is marked HMV SS Lady Loch. It would be suspended by its top ring, a basket or other container is hung from the hook, and the items inside the basket are then pulled downwards on the hook, which stretches the springs inside the works. The pulling action moves a rack and gears a calculated distance and the gears turn the pointer on the dial to indicate the weight of the goods. This scale measures up to 200 pounds capacity. The HMV SS Lady Loch was an iron steamship built in Footscray, Melbourne, by Campbell, Sloss and McCain in 1886 for the colonial Victorian government’s Department of Trade and Customs. It was armed with a 6-inch gun and two 1-inch Nordenfelt guns. The Sydney Morning Herald of 27th January 1888 describes the vessel in detail. It even comments on the interior of the Saloon “The wood work … is on a very elaborate scale and is exceedingly neat …”. The HMV Lady Loch performed Customs duties and serviced the lighthouses along the coast. The scale could have measured goods for the Customs Tax, or for measuring out supplies for the lighthouse keepers. The vessel was named after Lady Elizabeth Loch, wife of Sir Henry Loch, Governor of Victoria from 1884 to 1889. In 1932 Lady Loch was converted to a hulk and used in Brisbane, and finally scuttled in 1962 at Moreton Bay, Queensland.The scale has importance due to its connection to the 1886 HMV Lady Loch, a vessel of great significance to Melbourne’s shipbuilding industry. It was the largest auxiliary vessel in the Victorian Colonial Government’s fleet and the first prominent vessel launched by Melbourne’s shipbuilding industry. The scale is also important for its connection with the colonial navy's Custom's work, as the scale was available to weigh goods that could attract taxes and deal out goods for distribution to lighthouse keepers. The HMV Lady Loch was also important part of Victoria's maritime history for its communication and support of the lighthouse keeper's along the coast of Victoria.Scale; Salter's spring balance mechanical hanging scale, brass and iron. Equally spaced marks around the circular dial have values from 0 to 200 in increments of 10, each increment is also divided into 10. An iron ring is attached to a fitted loop on the top of the scale, and an iron hook is attached to the fitted loop onthe bottom of the scale. A moving pointer attached to the centre of the dial has a calibration screw joined to its base. Four screws fix the brass face to the works at the back. There are stamped and embossed inscriptions. Made by Salter in Britain, to Silvester's Patent design. The scale was once equipment carried abourd the steamship HMV SS Lady Loch. Stamped: "SALTER'S / SPRING BALANCE" "SILVESTOR'S / PATENT" Embossed in script: "HMV SS / Lady Loch"warrnambool, shipwreck coast, flagstaff hill, flagstaff hill maritime museum, flagstaff hill maritime village, scale, salter, spring balance, silvester's patent, lady loch, steamship, hmv, colonial navy, victoria, lady elizabeth loch, custom's vessel, lighthouse tender, 1886, government vessel, victorian government, measuring instrument, weight, weighing instrument, mechanical scale, hanging scale, hmv lady loch, weights and measures, silvestor's patent, george salter & co. -
Flagstaff Hill Maritime Museum and Village
Equipment - Boiler, T & F Johnson, boilermakers, late 19th century
A steam boiler like this late 18th century boiler, is often called a colonial boiler. Steam boilers were used in factories throughout Australia, mounted over similar designs of brick furnaces. This heat from the fire travels through the tubes in this fire tube boiler and the water heats as it circulates around them. Another kind of boiler is a water tube boiler, in which the water is inside the tubes and the heat of the combustion surrounds the tubes. The boiler in our collection burned wood as fuel but others of this design could also burn coal, coke, gas and liquid fuels. The boiler was made by T & F Johnson, boilermakers. In 1922 their factory was located at Coventry Street, South Melbourne. They were still advertising their 'Colonial, multi, vertical boilers, all sizes' at the same address in 1934. The connected pressure gauge, made in London by Dewrance, measures 0 to 400 pounds per square inch. John Dewrance is renowned as a pioneer of the steam locomotive in the early 19th century. He founded John Dewrance & Co. in South London in 1844. His son Sir John Dewrance took over in 1879. In 1939 the company became a subsidiary of Babcock & Wilcox, and was eventually owned by Emerson. How the boiler works: - A boiler is about two-thirds filled with water and heat is applied, in this case in the form of burning wood. The heat is transferred through the metal of the boiler to the water. When the water boils the steam rises to the top, and as it escapes from the boiler the steam pressure builds up in the steam space to later be released to do work; drive machinery such as ship and train engines, turbines, presses, wheels, and driving belts to operate looms and saws. The heat associated with the boiler can be used for preserving food, sterilising, factory manufacturing processes, and steaming wood for shipbuilding. Every boiler has several components fitted for safe operation: - - Safety valves - Gauge glass - Pressure gauge - Main steam stop valve - Water check valve - Blowdown valve - Manhole doorThe boiler is a significant item that gives us a snapshot of early Melbourne's industrial history. It is an example of the technological advancement during the Industrial Revolution where steam-driven machinery and motors could perform tasks more efficiently than manual labour. The makers were one of many boilermaker businesses in Melbourne during the early late-19th andearly 20th centuries. The maritime trade and skills of boilermaking are still learned and applied today. The Dewrance steam pressure gauge connected to the boiler was made by the London firms foundered by John Dewrance. He was renowned for developing the steam locomotive in the early 19th century.Boiler; a horizontal cylindrical underfired steam boiler. It is a multi-tubular design and is timber plank-clad, with brass fittings and pressure gauges. The boiler has an iron door at one end with a metal chimney above it. It is installed over a brick-enclosed solid fuel furnace. Two large, wood-mounted pressure gauges are connected to the boiler and have inscriptions. An inscription is on a red, cast iron plaque above the boiler door. The boiler's maker is T & F Johnson, South Melbourne. One of the pressure gauges was made by Dewrance, London..Maker's plate: "T & F JOHNSON / BOILERMAKERS / SOUTH MELBOURNE" Pressure gauge: "POUNDS PRESSURE / PER [square] INCH / DEWRANCE LONDON"flagstaff hill, warrnambool, maritime museum, shipwreck coast, flagstaff hill maritime village, great ocean road, boiler, multi tube boiler, steam boiler, steam technology, underfired boiler, horizontal boiler, timber clad boiler, steam power, industrialisation, boilermakers, south melbourne, dewrance, john dewrance, pressure gauge, dewrance pressure gauge, t & f johnson, london, steam engine, steam locomotive, pounds per square inch, 19th century, steam machine, johnson tyne foundry, colonial boiler, fire tube boiler -
Flagstaff Hill Maritime Museum and Village
Instrument - Chronometer or Marine Clock
This chronometer was made around 1936 and has been on display at Flagstaff Hill for over 40 years as part of the exhibit of the ‘Reginald M’, an Australian-built, 19ss, coastal trader vessel. A chronometer is an accurate mechanical instrument used for measuring time. It is constructed carefully to remain stable even under the changing conditions of seafaring life such as temperature, humidity and air pressure. The Master or Navigator of a ship could use the chronometer and the positions of celestial bodies to calculate the ship’s latitude at sea. In 1905 the business Chronometerwerke GmbH was formed in Frankfurt, Germany, to supply the country with high-quality mechanical chronometers and ship clocks for their maritime trade, making the country independent of other international suppliers such as those in England. In 1938 the firm was renamed Wempe Chronometerwerke. The business continues today. Its products now include its well-known chronometers, battery-powered ship clocks, ship’s bell clocks, barometers, barographs, thermometers, hygrometers, comfort meters to measure temperature and humidity, and wristwatches. The company also performs chronometer testing facilities for the State’s Weights and Measures office. The article written by Givi in July 2022 “The Basics of Marine Meteorology – a Guide for Seafarers” refers to the weather’s signs and patterns being repeated over and over, and the recording of these observations helps forecasters predict changes in the weather. The chronometer is an example of a mechanical navigational marine instrument in use in the early to the mid-20th century. The maker is significant as part of a German government initiative to be self-sufficient in the production of good quality marine technology. This chronometer is significant as part of the exhibit, the Australian-built vessel, 1922 coastal trader ‘Reginald M’, listed on the Australian Register of Historic Vessels and on display for over 40 years.Marine chronometer or marine clock, brass case, glass cover, Roman numerals, 24-hour numbers beside them. Two black hands, a keyhole for winding and ventilation holes in the side. The base has a collar with four machined mounting holes. Inscriptions are on the clock’s face."Made in Germany" and "WEMPE / CHRONOMETERWERKE / HAMBURG"flagstaff hill, flagstaff hill maritime museum and village, warrnambool, maritime museum, maritime village, great ocean road, shipwreck coast, marine meteorology, horology, chronometer, marine technology, latitude, marine navigation, mechanical instrument, scientific instrument, ship clock, chromometerwerke gmbh, wempe chronometerwerke, marine clock -
Flagstaff Hill Maritime Museum and Village
Equipment - Ship's Wheel, John Hastie et al, Early 20th Century
John Hastie Engineer and millwright John Hastie opened small manufacturing works in Greenock in 1845 and 1853 patented the first self-holding steering gear. The firm became known as John, Hastie and Co. Ltd. in 1898 after taking on limited liability status and their main works were at Kilblain Street, Greenock, where they specialised in ships' steering gear. The company also occupied works at Rue End Street, Greenock. Plans of this unit depict a stockyard to the east, with areas for welding; fitting and assembly; flame, cutting and fabrication; and a machine bay. The company was dissolved in 1991. Brown Brothers Brown Bros Rosebank Ironworks made the steering gears for many large ship's, including The Titanic. Andrew Betts Brown the founder was born in 1741 and closely associated with many improvements in marine engineering. He was educated in his native city and served his apprenticeship as an engineer in the locomotive works of the North British Railway Company at St. Margaret's. During his apprenticeship, he attended the evening classes at Watt College. subsequently going to Manchester to study chemistry. He went to London around 1863 and took over an old brewery, which he converted into an engineering works. During his time there he invented an overhead travelling crane, which was used on the construction of Blackfriars Bridge London. He went on to develop plant which used steam and hydraulic power for discharging ships as a result the company was contracted to install this equipment in Hamburg Docks. By around 1870 he continued to construct machinery in London but realised that conditions were more favourable in Edinburgh. He acquired land at Rosebank adjoining the North British Railway Company's line to Granton, and the necessary infrastructure was completed allowing him to finish the Hamburg contract. The works at Rosebank were eventually extended and added to until they became one of the largest engineering works in the East of Scotland. Mr Brown was a member of numerous engineering institutions, the best known at the time being the Institution of Naval Architects. He was also a Fellow of the Royal Society of Edinburgh, a member of the Institute of Mechanical Engineers and of the Institution of Marine Engineers he died in 1906 at the age of 67.An item made by two marine innovators of marine auxiliary machinery, equipment and itemsShip's wheel, brass, attached to brass pillar. The base has six holes in it for securing it in place. Top of the ship's wheel pillar has a brass, adjustable arrow pointer that is positioned over a dial etched into the flat brass surface. The dial reads " PORT STABD". Lines and degrees are marked, with '0' in centre and every 5 degrees, from 0-35, in both Port and Starboard sidesInscription to wheel hub "Brown Brothers & Co. Ltd, Rosebank Ironworks, Edinburgh"flagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, john hastie, john hastie, andrew betts brown, ships wheel, ship steering gear, marine equipment, instrument, navigation -
Bendigo Military Museum
Instrument - BUGLE, GERMAN WW1, Enemy Forces, 1914-1918
... of Hohenzollern). 2. CHR REISSER was a well known instrument maker ...Refer Cat No 6631P re “Fleming” 1. THIS COAT OF ARMS, WAS ONE OF THE KINGDOM'S OF PRUSSIA. The sword and the mace pattern was used between about 1803 - 1898. (It was superseded by a sword and orb with a cross surmounted on the orb). This second pattern lasted till 1918 with the fall of the House of Hohenzollern). 2. CHR REISSER was a well known instrument maker in those days. 3. ULM is a town in Wurtemberg, Germany.This is a brass bugle. On top is a crest, it is set in a raised circle. It features an eagle wearing a crown - wings spread. One talon has a sword, the other talon has what appears to be a mace. The mouthpiece is secured with a short brass chain.Stamped at opening of the outside is "CHR REISSER" "ULM"ww1, bueles, germanic, bugle -
University of Melbourne, Burnley Campus Archives
Instrument - Optical Dumpy Level, Troughton & Simms, Dumpy Level, Pre 1915
Found in the Curator's CottageBrass Troughton & Simms, London optical dumpy level on compass base. Made for Kilpatrick & Co, Melbourne. See B91.126 for photograph of student using it Circa1968.Troughton & Sims LONDON Kilpatrick & Co Melbourne No. 702surveying equipment, students, landscaping -
Flagstaff Hill Maritime Museum and Village
Instrument - Piano, John Broadwood & Sons, circa 1862
The company that made this piano was founded in 1728 by Burkat Shudi, a Swiss harpsichord maker. John Broadwood, a joiner and cabinetmaker, worked for Shudi and eventually married his daughter and became a partner in the firm. Broadwood continued in this business after Shudi died in 1773. John's son James also worked for the firm and in 1795 they became John Broadwood & Son, then when a third son joined as partner in 1808 they become John Broadwood & Sons Ltd. and the name has continued on even now. Pianos manufactured by John Broadwood are of world renown.This piano is significant as a historical musical instrument. It is an example of the type of instruments used for entertainment and worship from the mid-19th to early-20th century. Piano, cottage upright, wooden casing in dark wood with a rich grain. The piano features a pair of brass candlesticks, a music holder and a fitted lock on the keyboard cover. Decorative design etched in panel between candlesticks, Maker's name is in fancy lettering behind the keyboard. Made by John Broadwood and Sons, London. Painted in fancy text "John Broadwood & Sons/ / London"flagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, piano, upright, candlestick holder, john broadwood & sons london, musical instrument, upright cottage piano, antique piano, victorian entertainment -
Clunes Museum
Instrument - MICROSCOPE, J SHUGG
... LOCAL HISTORY INSTRUMENTS OPTICAL INSTRUMENTS OPTICAL BRASS ...BRASS BI-OPTICAL MICROSCOPE MOUNTED ON WOODEN STANDlocal history, instruments, optical, instruments, optical -
Bendigo Military Museum
Instrument - Duplex Heliograph Mk V - 1940 with Tripod, LUCO Art Metal Coy Ltd, London, 1940
The Heliograph MkV is a fascinating piece of historical surveying and communications equipment. It was primarily used for visual signaling by reflecting sunlight with a mirror to send coded messages over long distances. This method was primarily useful in remote areas where other forms of communication were not available. The MkV model, specifically, was widely used by the British Army and other military forces from around 1906 until the mid 1960s. It remained in use with the Australian Army Survey Corps until the mid 1980s. The device typically included a 5 - inch mirror and was often mounted on a tripod for stability. Initially the instrument was used to communicate between survey stations using Morse code to coordinate their activities. Later when better forms of communication were available, they were used for precise angle alignment where the sunlight reflection from the mirror was targeted between the survey stations to give very accurate results. The MkV was relatively light weight and portable, making it ideal for use in the field. It could be setup and adjusted quickly. The heliograph had an adjustable mirror that could be tilted to reflect sunlight towards a distant receiver. Surveyors could align the mirror using a sighting device. Whilst it was primarily used by the Military it was also used in civil surveying particularly in the remote areas of Australia. The British Army Mark V version uses a flat round mirror with a small unsilvered spot in the centre. The sender aligned the heliograph to the target by looking at the reflected target in the mirror and moving their head until the target was hidden by the unsilvered spot. Keeping their head still, they then adjusted the aiming rod so its cross wires bisected the target, they then turned up the sighting vane, which covered the cross wires with a diagram of a cross, and aligned the mirror with the tangent and elevation screws, so the small shadow that was a reflection of the unsilvered spot hole was on the cross target. This indicated that the sunbeam was pointing at the target. If the sun was in front of the sender, its rays were reflected directly from this mirror to the receiving station. If the sun was behind the sender, the sighting rod was replaced by a second mirror, to capture the sunlight and direct it onto the main mirror to reflect it to the receiving station.. 1 Brish Army "Mance" Mk V A253 Heliograph has two 125mm diameter mirrors on a brass arm with targeting attachments. The Instrument is mounted on a three-legged tripod of brass and mahogany with spiked feet, approximately 1.2 metres high. The instrument was made by LUCO Art Metal Co Ltd, London in 1940. .2 A military green metal carrying safety storage case with khaki shoulder strap.A253 stamped on instrumentroyal australian survey corps, rasvy, fortuna, army survey regiment, army svy regt, asr