Showing 152 items
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Flagstaff Hill Maritime Museum and Village
Rangefinder, E R Watts & Sons, 1930-1945
E. R. Watts and Son, makers of theodolites and other surveying instruments, of 123 Camberwell Road, London. The company was established in 1856 by Edwin Watts at twenty-three he had saved £100 from his earnings to start the business with his staff consisting of one boy and later Alexander Clarkson as an apprentice with the workshop a small room over a Bemondsey stable. Watts' first order was from Negretti and Zambra for a mining dial Alexander Clarkson In the early days the firm worked mainly on marine compasses. Edwin Watts would go down to the Docks to adjust the compasses once they had been installed on the ships. In May 1873 the business moved to larger premises a house with a garden. The workshop was also the home of Mr and Mrs Watts and their five sons and three daughters. By now there were fifteen to twenty men employed by the firm. The company were commissioned to supply the Theodolites and Levels for the construction to the Canadian Pacific Railway in 1881. Towards the end of the century, the firm began to make heliographs continuing to produce them for the government until just before the Second World War when by agreement assigned their manufacture to another firm. 1904 The first dividing engine was completed by George William Watts. It was so remarkable an instrument at the time and for years afterwards, In 1907 Arthur Ames went to Canada and started an organisation in Winnipeg in 1909 this became a separate company called E. R. Watts and Son Ltd. of Ottawa. This firm developed considerably and was eventually with the co-operation of three other instrument companies (Cambridge Instrument Co, Ross, and Negretti and Zambra), were reconstituted as ”Instruments Ltd” of Ottawa and Toronto. During the next ten years, the firm expanded greatly to include glass grinding, leather work, dividing and engraving, testing, adjusting and packing. This expansion was continued during the First World War when workshops were completed and the machinery installed and running within eleven weeks from the start of construction. During the war, a Sergeant Coles, among the rats, lice and mud of the trenches, fitted various bits of scrap into his cocoa tin and made the first Flash Spotter for plotting the positions of enemy guns. Coles was rushed home to the firm's factory where he and George William Watts designed a spotter not made out of a cocoa tin and as a result, the Watts Vertical Force Variometer was developed during WWI. Other Watts instruments made in the First World War included the Light Mountain Theodolites which were taken on Mt Everest expeditions. In 1919 ER Watts and Sons was incorporated as a limited company and in 1939 G. A. Whipple joined the Board of Directors. Shortly afterwards, Frank Charles Watts died having been Chairman of the firm for over 37 years and seen it through the First World War with all its expansions and difficulties. He was succeeded by his brother George William Watts with the vacant post of Managing Director being filled by G. A. Whipple. During the Second World War, the company expanded further and the number of employees rose to well over 1,300. In 1946 Watts acquired 78% of Adam Hilger and the microscope maker James Swift and Son Who were Manufacturers of Theodolites, Levels, Alidades, Meteorological Instruments, Variometers, and many other types of scientific instruments Then in 1948 the company amalgamated with Adam Hilger as Hilger and Watts which was then incorporated as a public company.Naval Rangefinder with a vertical wooden handle, and an arrangement of optical lenses. Three reversible brass inserts calibrated on both sides in yards, correspond to various base heights, (20 and 25 feet, 30 and 35 feet and 40 and 50 feet). They are fitted along the axis of the instrument. When the scale for the appropriate base height is selected and inserted, the carriage can be slid for coincidence and the distance read at the index mark on the sliding carriage.inscribed "Rangefinder Cotton Type Mk II" Calibrated scale up to 5000 yds (50 ft), 5000 yds (35 ft), 4000 yds (25 ft) made by E. R. Watts & Son.flagstaff hill, warrnambool, shipwrecked coast, flagstaff hill maritime museum, maritime museum, shipwreck coast, flagstaff hill maritime village, great ocean road, rangefinder, cotton type, e r watts & sons, naval range finder, marine equipment -
Flagstaff Hill Maritime Museum and Village
Equipment - Balance Scale, 1850s
A Large Rare mid 19th Century Balance Scale (also called a Beam Scale) Made in England by W&T Avery a British manufacturer of weighing machines. The company was founded in the early 18th century and took the name W & T Avery in 1818. The undocumented origin of the company goes back to 1730 when James Ford established the business in the town of Digbeth. On Joseph Balden the then company’s owner’s death in 1813 William and Thomas Avery took over his scale making business and in 1818 renamed it W & T Avery. The business rapidly expanded and in 1885 they owned three factories: the Atlas Works in West Bromwich, the Mill Lane Works in Birmingham and the Moat Lane Works in Digbeth. In 1891 the business became a limited company with a board of directors and in 1894 the shares were quoted on the London Stock Exchange. In 1895 the company bought the legendary Soho Foundry in Smethwick, a former steam engine factory owned by James Watt & Co. In 1897 the move was complete and the steam engine business was gradually converted to pure manufacture of weighing machines. The turn of the century was marked by managing director William Hipkins who was determined to broadening the renown of the Avery brand and transforming the business into a specialist manufacture of weighing machines. By 1914 the company occupied an area of 32,000m² and had some 3000 employees. In the inter-war period the growth continued with the addition of specialized shops for cast parts, enamel paints and weighbridge assembly and the product range diversified into counting machines, testing machines, automatic packing machines and petrol pumps. During the second world war the company also produced various types of heavy guns. At that time the site underwent severe damage from parachute mines and incendiary bombs.Then from 1931 to 1973 the company occupied the 18th-century Middlesex Sessions House in Clerkenwell as its headquarters. Changes in weighing machine technology after World War II led to the closure of the foundry, the introduction of electronic weighing with the simultaneous gradual disappearance of purely mechanical devices. The continued expansion was partly achieved through a series of acquisitions of other companies. After almost a century of national and international expansion the company was taken over by GEC in 1979. Keith Hodgkinson, managing director at the time, completed the turn-around from mechanical to electronic weighing with a complete overhaul of the product range of retail scales and industrial platform scales. In 1993 GEC took over the Dutch-based company Berkel and the Avery-Berkel name was introduced. In 2000 the business was in turn acquired by the US-American company Weigh-Tronix, who already owned Salter, and is today operating as Avery Weigh-Tronix. Item made and used possibly around the 1850s by Victorian colonial government to check weights of goods being sold by early shop keepers on the gold fields item is very rare.James McEwan & Co were the retailers of W & T Avery scales in Victoria from 1852. A very rare item used probably to check weights used by merchants during colonial times by government inspectors in Victoria. A similar example exist in a NSW museum, the item is believed to have been made before W & T Avery expansion to the Soho foundry in Birmingham in 1885 and after 1818.Beam balance scale suspended from a wooden tripod, with metal trays suspended by three chain lengths. embossed on the balance beam W T Avery, Birmingham,flagstaff hill, warrnambool, shipwrecked coast, flagstaff hill maritime museum, maritime museum, shipwreck coast, flagstaff hill maritime village, great ocean road, scale, avery -
Federation University Historical Collection
Booklet, Ballarat School of Mines Students' Magazine, Term 4, 1905, 1905
The Ballarat School of Mines Students' Magazine in 1905 was an unofficial journal edited by the students.Twenty-eight page booklet known as the Ballarat School of Mines Student's Magazine. Contents include: A jaunt to South Australia; Tests for the Assay Lab; Huntingdon-Heberlein Process; Slag Calculation; Electrical Laboratory; Hydrochoric Acod-Phenolph-thalein; Ballarat scientific Society; James W. Hawthorne; Maryborough Excursion; Prof Alexander Purdie; School Dirge; Compound Engines; Sister Institutions; Trafalgar, Acrobates Pymgaeus, Pigmy Flying Phalangerobituary for Alexander Purdie, Electric traction, Estimation of Fat in Milk by the Babcock Machine, first Ballarat School of Mines Annual Dinner; Crytallography Images include; Electrical Laboratory; Professor Dawbarn; James W. Hawthorne; Ballarat Rowing Eight on Lake Wendouree (H. Valentine, W. Pearce, W. Figgis, L. Seward, C. McGennis, D. Don, R. Nevett, M. Gaunt, N. Buley). Advertisements: Craig, Williamson Pty Ltd; Ballarat Baths (B. McCausland); W. Gribble & Co., H.B. Silberberg & Co; F. Jago - Ballarat Boot Palace; John Slater & Co., Kiels Motor & Cycle Stores; Alex Miller & Sons; Thomas McPherson & Son; W. Cornell; Brush Electrical Engineering Co; Ballarat School of Mines; Harry Davies & Co; Stansfield & Smith; Craig's Royal Hotel.ballarat school of mines, south australia; adelaide, valentine, pearce, figgis, seward, mcgennis, don, nevett, gaunt, buley, adelaide school of mines, kerr grant, arizona, jack adam, adam, j.a. reid, reid, jager, rowing, h. valentine, w. pearce, w. figgis, l. seward, c. mcgennis, d. don, r. nevett, m. gaunt, n. buley, cycling -
Federation University Historical Collection
Photograph, Ballarat School of Mines Davey Paxman Experimental Steam Engine, c1902
The Davey Paxman Experimental Steam Engine was purchased as the result of a bequest from Thomas Bath. The 'substantial sum' was used to build an Engineering Laboratory. The Ballarat School of Mines Council minutes of 08 November 1901 record: - Plans for [the] proposed building were submitted ... and ... it was resolved that a temporary building for an Engineering Laboratory be put up.' This laboratory, as an existing building, is first mentioned in the Ballarat School of Mines President's Annual Report of 1901, presented on 28 February 1902, reporting 'the erection of a building 67ft long by 33 ft wide' This report also lists all the equipment that would be accommodated in the Engineering Laboratory, including the experimental steam engine and boiler. The experimental Davey-Paxman steam engine arrived in Ballarat towards the end of 1902. The Engineering Laboratory was opened on 14 August 1903 by His Excellency Sir Sydenham Clarke. This engineering laboratory remained in use till about 1945. By 1944 preparations were under way at the Ballarat School of Mines to expand existing facilities, to be ready for the influx of returned soldiers. A new Heat Engines laboratory was built, this time of brick construction, replacing the previous corrugated-iron shed. In the early stages the steam engine was used to drive an overhead transmission shaft for machinery in the adjacent workshop. Later the steam engine was moved to a space that became the Heat Thermodynamics Laboratory. At the end of 1969 the engine was relocated to the Thermodynamics Laboratory at the then Ballarat Institute of Advanced Education (BIAE) Mt Helen Campus. It was donated to Sovereign Hill in 2006. According to the research of Rohan Lamb in 2001 around five experimental steam engines were made by Davey Paxman, and three of these had similar configuration to the Ballarat School of Mines Steam Engine, however, each of these was also unique with different valve arrangements. The list, which was on a scrap of paper in a folio held in the Essex Archives, confirmed that one was sent to India. The Ballarat steam engine can be dated to late 1901 to early 1902. Zig Plavina was responsible for moving the steam engine to Mount Helen, and worked on it as a technician for many years. He observed the following: * The condenser is driven by the low pressure engine. * The following arrangements are possible: i) the high pressure engine alone, exhausting to atmosphere. Condenser not used, crankshaft flanges not coupled. ii) crankshafts coupled, mains pressure (120 psi) steam supplied to high pressure engine, partially expanded steam delivered to low pressure engine (Tandem operation). Choice available re exhaust steam: either to the condenser or to atmosphere. iii) crankshafts not coupled, reduced pressure steam supplied to low pressure engine. Exhaust steam - either to the condenser or to atmosphere. * Valve arrangement - a choice of Pickering cut-off or throttle governor. On low pressure engine - throttle governor only. Black and white photograph of an experimental steam engine which was produced for the Ballarat School of Mines. It was designed for experimental purposes, such as testing of efficiency, etc. The laboratory which housed the steam engine was lit with gas lighting. davey paxman experimental steam engine, model steam engine, davey paxman, steam, thomas bath, thermodynamics -
Federation University Historical Collection
Plan, Mild Steel Boiler for Yarrawee Suction Dredge, 16 January 1907
George Milford, a long term staff member of Thompsons Foundry Castlemaine, remembers discussing Alexander Sinclair with this son, Alex Sinclair Jnr. "When Alex Jnr was a boy, his father, a senior design engineer, was sent to Malaya to oversee the erection on site of a suction cutter dredge for Thompsons. This was an adaptation of the idea of a bucket-dredge, where gold is won from alluvial gravels. In the 1915-1920 era, the Thompsons Engineering Department designed a suction-cutter dredge, by which hydraulic suction with a revolving cutter at the end of a long proboscis would collect the alluvial soil and deliver it into the dredge for recovery of the precious metals. Export marketing was then ‘all the go’, and the tin dredges were ordered from Thompsons, using the new cutter design. The dredges were, of course, shipped to Malaya in pieces, ready to be assembled on site. A number of Thompsons employees were selected to travel to Malaya to assemble the dredges. There were fourteen men in the gang. These men sailed on 1st July 1925, their number including Delmenico, McKay and Charles Albert Hauser, an engine driver. C A Hauser died of malaria in Malaya shortly after arrival. Components for a further three of these dredges were in transit or on site when the first suction-cutter dredge was assembled and tested. The designers had failed to take into account the fact that, in the jungle floor in Malaya, many trees grow up, and fall down, in tropical conditions, and become submerged still waterlogged in the floor of the jungle, and in the tin-bearing gravels. The suction-cutter dredge was found to be inefficient in these circumstances, the price of tin had fallen and the Malayan client reneged on the contract. Faced with an outlay of over £4,000 on which no money would be received, the company went bankrupt on 25th August 1925. Alex Sinclair Snr was at that stage in Malaya, and received the news of the bankruptcy by telegram. Upon telegraphing his employers for funds to return home, he received the reply that there were no such funds available. Alex Sinclair Jnr told the story of how his father worked as a labourer in Malaya for two years, while his mother took in washing and ironing during the same period, until together they had assembled enough money to pay for his father’s return Anyone who talks about “the good old days” is talking nonsense!"Large blue printed paper plan outlining the conditions of contract for the making of a steel boiler. The Blueprint includes design drawings and written contract specifying materials, time frame and costs. Signed on front 'Alec Sinclair Consulting Engineer, 31 Queen Street, Melbourne'. Stamped on verso 'Printed by Paterson & Co, Colonial Mutual Chambers, Collins St, Melbourne'. blueprint, designs and plans, yarrawee suction dredge, conditions of contract, thompsons foundry castlemaine, george milford -
Flagstaff Hill Maritime Museum and Village
Functional object - Standard avoirdupois weights, Avery Ltd, 1950s
A weight made in England by W&T Avery a British manufacturer of weights and weighing machines. The company was founded in the early 18th century and took the name W & T Avery in 1818. The undocumented origin of the company goes back to 1730 when James Ford established the business in the town of Digbeth. On Joseph Balden, the then company’s owner’s death in 1813 William and Thomas Avery took over his scale making business and in 1818 renamed it W & T Avery. The business rapidly expanded and in 1885 they owned three factories: the Atlas Works in West Bromwich, the Mill Lane Works in Birmingham and the Moat Lane Works in Digbeth. In 1891 the business became a limited company with a board of directors and in 1894 the shares were quoted on the London Stock Exchange. In 1895 the company bought the legendary Soho Foundry in Smethwick, a former steam engine factory owned by James Watt & Co. In 1897 the move was complete and the steam engine business was gradually converted to pure manufacture of weighing machines. The turn of the century was marked by managing director William Hipkins who was determined to broadening the renown of the Avery brand and transforming the business into specialist manufacture of weighing machines. By 1914 the company occupied an area of 32,000m² and had some 3000 employees. In the inter-war period, the growth continued with the addition of specialized shops for cast parts, enamel paints and weighbridge assembly and the product range diversified into counting machines, testing machines, automatic packing machines and petrol pumps. During the second world war, the company also produced various types of heavy guns. At that time the site underwent severe damage from parachute mines and incendiary bombs. Then from 1931 to 1973, the company occupied the 18th-century Middlesex Sessions House in Clerkenwell as its headquarters. Changes in weighing machine technology after World War II led to the closure of the foundry, the introduction of electronic weighing with the simultaneous gradual disappearance of purely mechanical devices. The continued expansion was partly achieved through a series of acquisitions of other companies. After almost a century of national and international expansion, the company was taken over by GEC in 1979. Keith Hodgkinson, managing director at the time, completed the turn-around from mechanical to electronic weighing with a complete overhaul of the product range of retail sales of industrial platform scales. In 1993 GEC took over the Dutch-based company Berkel and the Avery-Berkel name was introduced. In 2000 the business was in turn acquired by the US-American company Weigh-Tronix, who already owned Salter, and is today operating as Avery Weigh-Tronix. An item used used by grocers and merchants to weigh store bought goods around the 1950s. This item gives an insight into social history of the time.Weights, metal, silver electroplated, 1 x 2lb, 2 x 4lb, 1 x 7lb. (4) all government stamped, made by Avery Ltd.Noneflagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, weight, imperial weight, imperial standard weights and measures, imperial standard weight -
Flagstaff Hill Maritime Museum and Village
Functional object - Weight Avoirdupois, Avery Ltd, 1940-1950s
A weight made in England by W&T Avery a British manufacturer of weights and weighing machines. The company was founded in the early 18th century and took the name W & T Avery in 1818. The undocumented origin of the company goes back to 1730 when James Ford established the business in the town of Digbeth. On Joseph Balden, the then company’s owner’s death in 1813 William and Thomas Avery took over his scale making business and in 1818 renamed it W & T Avery. The business rapidly expanded and in 1885 they owned three factories: the Atlas Works in West Bromwich, the Mill Lane Works in Birmingham and the Moat Lane Works in Digbeth. In 1891 the business became a limited company with a board of directors and in 1894 the shares were quoted on the London Stock Exchange. In 1895 the company bought the legendary Soho Foundry in Smethwick, a former steam engine factory owned by James Watt & Co. In 1897 the move was complete and the steam engine business was gradually converted to pure manufacture of weighing machines. The turn of the century was marked by managing director William Hipkins who was determined to broadening the renown of the Avery brand and transforming the business into specialist manufacture of weighing machines. By 1914 the company occupied an area of 32,000m² and had some 3000 employees. In the inter-war period, the growth continued with the addition of specialized shops for cast parts, enamel paints and weighbridge assembly and the product range diversified into counting machines, testing machines, automatic packing machines and petrol pumps. During the second world war, the company also produced various types of heavy guns. At that time the site underwent severe damage from parachute mines and incendiary bombs. Then from 1931 to 1973, the company occupied the 18th-century Middlesex Sessions House in Clerkenwell as its headquarters. Changes in weighing machine technology after World War II led to the closure of the foundry, the introduction of electronic weighing with the simultaneous gradual disappearance of purely mechanical devices. The continued expansion was partly achieved through a series of acquisitions of other companies. After almost a century of national and international expansion, the company was taken over by GEC in 1979. Keith Hodgkinson, managing director at the time, completed the turn-around from mechanical to electronic weighing with a complete overhaul of the product range of retail sales of industrial platform scales. In 1993 GEC took over the Dutch-based company Berkel and the Avery-Berkel name was introduced. In 2000 the business was in turn acquired by the US-American company Weigh-Tronix, who already owned Salter, and is today operating as Avery Weigh-Tronix. An item used used by grocers and merchants to weigh store bought goods around the 1950s. This item gives an insight into social history of the time.Weight, brass, Stamped F27, 2lb.flagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, weight, brass weight -
Bendigo Historical Society Inc.
Document - MINING ACCIDENTS - BOILER EXPLOSION AT LANSELL & MUELLERS COMET MINE
Handwritten extracts on a boiler explosion at Lansell & Muellers Comet Mine. 'Everything had been alright and there was plenty of water in the glass. When the boiler exploded it damaged a small part of the engine-house and tore the flue from end to end. The cause of the explosion could not be found, although it had stood the tests.'document, gold, mining accidents, mining accidents, boiler explosion at lansell & muellers comet mine, mining statistics, mines report 1884 page 43 & 44, william benson, james hall -
Bendigo Historical Society Inc.
Newspaper - BILL ASHMAN COLLECTION: CORRESPONDENCE
Newspaper article titled Scalebuoys in Cars. Interesting Bendigo Tests. Date 1937. Article mentions test carried out by Mr. Stevenson on the two Sea Lake buses, a large Fargo parlour coach and a President Eight Studebaker, seven passenger, owned by Mr. House. Article details the differences and savings in fuel consumption the Scalebuoys made to the engines.sciences, instruments - general, scalebuoy, bill ashman collection - correspondence, f a stevenson, stevenson brothers, mr house -
National Vietnam Veterans Museum (NVVM)
Booklet, Request for Tender for the Purchase and Removal of; Rolls Royce Meteor Petrol Engines, Spares, Test Equipment And Tools etc
... Royce Meteor Petrol Engines, Spares, Test Equipment And Tools ...Details of spare parts that were part of the Centurion Tank sale. Information Dossier for Tenders: Request No. 86-2449military equipment, request for tender -
Bendigo Historical Society Inc.
Newspaper - JENNY FOLEY COLLECTION: HEYDAYS
Bendigo Advertiser "The way we were" from Monday, February 28, 2005. Heyday: the surface view of the test shaft, plant and poppet legs of the government shaft at Fosterville (October 1900-April 1903). A pumping plant and winch were purchased from the Tyson's Reef Mine for 900 pounds and removal and assembly cost 723 pounds. Arrangements were also made with the North Stewart Company for the loan of poppet legs, the steam winch engine and buildings. The closing of the shaft led to the exodus from Fosterville.newspaper, bendigo advertiser, the way we were -
Moorabbin Air Museum
Document (item) - Bill Prowse Collection WP14 See details in Description, Bill Prowse Collection WP14
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Moorabbin Air Museum
Document (item) - Wamira NIA E37 Documents and drawings
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Moorabbin Air Museum
Manual (collection) - Engine electrical test panel, Engine Electrical Test Panel Description - Application - Operation - Maintenance - Spare Parts. Item No. 54
... Engine electrical test panel...Engine Electrical Test Panel Description - Application... Moorabbin melbourne Engine Electrical Test Panel Description ...Item 54Brief overview of the operation, application, maintenance and spare parts for electrical test panel -
Moorabbin Air Museum
Manual (collection) - Allison 501-D13 Engine Certification, Allison Model 501-D13 Certification Test Schedule Type Certificate Production Certificate
US Dept of CommerceUS Dept of Commerce certification & Production Certificate -
Moorabbin Air Museum
Document (Item) - High - Speed Tests Of Conventional Radial Engine Cowlings NACA Report No. 745
... . File No 78A High - Speed Tests Of Conventional Radial Engine ...Description: Date: August 1942 Author: S. B. Gates, M. B. Morgan Publisher: Royal Aeronautical Establishment Pages: 15 Binding: Permament/Soft Keywords: Summary of REA Technical Note Aero 1035 File No. 75A Level of Importance: National. File No 78A -
Moorabbin Air Museum
Manual (item) - Aero Engines: Overhaul, Testing, and Installaion for Ground Engineers
... Moorabbin melbourne Small khaki hard-cover book Manual Aero Engines ... -
Moorabbin Air Museum
Manual (item) - General Electric Test Cell 123 Production Engine Quality Operation Manual
... General Electric Test Cell 123 Production Engine Quality...General Electric Test Cell 123 Production Engine Quality... Moorabbin melbourne General Electric Test Cell 123 Production Engine ... -
Moorabbin Air Museum
Manual (item) - General Electric Technical Memorandum F404 Engine Systems CAC, F404-GE-404 Engine 392002 Test Cell Calibration of CAC Test Cell 4
... F404-GE-404 Engine 392002 Test Cell Calibration of CAC Test... Moorabbin melbourne F404-GE-404 Engine 392002 Test Cell Calibration ... -
Moorabbin Air Museum
Manual (item) - CAC Commonwealth Aircraft Corporation Checking and Use of Anti-Surge Device During Stall Testing of Atar 09C3 Engines in Avon Test Cell
... During Stall Testing of Atar 09C3 Engines in Avon Test Cell ...Commonwealth Aircraft Corporation -
Moorabbin Air Museum
Document - CAC Commonwealth Aircraft Corporation, No.1 Test Cell Engine Running Time
... No.1 Test Cell Engine Running Time ... Moorabbin melbourne No.1 Test Cell Engine Running Time Document CAC ... -
Moorabbin Air Museum
Manual (item) - ATAR Engine Production Cradle Diagram, ATAR Production Cradle Installation No. 2 Test Cell
... Cradle Installation No. 2 Test Cell Manual ATAR Engine Production ... -
Moorabbin Air Museum
Document - CAC atar 9C engine project 09 C3 surge tests Mirage Merignac SNECMA fuel system
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Moorabbin Air Museum
Manual (Item) - CAC Mirage project file 1 A 59 costings flight test Rolls Royce Avon mark 67 engine
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Moorabbin Air Museum
Booklet (item) - RAAF - Flight Test Report - Flight Test Of An Avon MK 26 Engine With The Balance Piston Removed
Aircraft Research & Development Report No. TI 295 -
Moorabbin Air Museum
Drawing - CAC Commonwealth Aircraft Corporation, Avon Test House Plan ATAR Engine Control Location
... Avon Test House Plan ATAR Engine Control Location... Moorabbin melbourne Avon Test House Plan ATAR Engine Control ... -
Moorabbin Air Museum
Drawing (item) - Drawing of Engine Test House Extension Proposal, Basic Proposal (#2) for Avon Test House Extensions to suit ATAR Engine
... Drawing of Engine Test House Extension Proposal...) for Avon Test House Extensions to suit ATAR Engine Drawing Drawing ...Drawing of necessary upgrades to facilities during the RAAF's transition from the CAC Sabre to the Dassault Mirage III. -
Moorabbin Air Museum
Book (item) - CAC Collection - Technical Data Bell Helicopter Company
Acceptance Test Specification For The 206-040-100 Driveshaft Assembly Engine To Transmission -
Moorabbin Air Museum
Document (item) - CAC Collection -Avon Mk105(R.A.7.)Engine No.190 150 Hours Modification Approval Test July/August 1952
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B-24 Liberator Memorial Restoration Australia Inc
Pratt & Whitney R 1830 Radial Engine, TR 261
This motor was assembled over a twelve-month period (c.2007) from various components the B-24 Liberator restoration group had stored. It was the first exercise to allow the group to understand the configuration of these motors as well as get experience in general methods of repair. This motor was nicknamed 'The Bitza', referring to how it came to be. While it may not be of a high standard, it is capable of being run on the test rig for visitors. The Pratt & Whitney R 1830 is a double row 14 cylinder air cooled radial engine with a capacity of 1830 cubic inches, (30 litres), developing some 1200 horsepower at a maximum 2700 rpm.Engine Number TR 261radial engine, pratt & whitney