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Flagstaff Hill Maritime Museum and Village
Equipment - Boiler, T & F Johnson, boilermakers, late 19th century
... Dewrance, instrument maker... the boiler door. The boiler's maker is T & F Johnson, South Melbourne ...A steam boiler like this one, made in the late 18th century, is often called a colonial boiler. Steam boilers were used in factories throughout Australia, mounted over similar designs of brick furnaces. This boiler is a fire tube type, in which the heat from the fire travels through the tubes and water 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 shipbuildin. 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 -
Federation University Historical Collection
Boxed sextant, Sextant, Betweeen 1840 and 1858
... Keohan - Mathematical Instrument maker & Optician... sextant Keohan - Mathematical Instrument maker & Optician ...This item is possibly the sextant donated to the Ballarat School of Mines Museum on 21 October 1885 by D. Turpie of Ballarat.Timber (ebony?) framed sextant with ivory scale, brass radial arm and ivory vernier scale. Mirrors and viewer are set in brass.Maker's label inside the hinged lid.sextant, scientific instrument, d. turpie, navigation, ballarat school of mines museum -
Federation University Historical Collection
Instrument - Scientific Instrument, Drainage Level
... T. Matthews, Nautical, Optical & Mathematical Instrument... scientific instruments Boxed telescopic sight with longitudu=inal ...Probably used for surveying courses at the Ballarat School of Mines Boxed telescopic sight with longitudu=inal bubble level and a quadrant draduated in +- 40 in 100 22mm diameter. Female screw thread base. Push-Pull focussing. Housed in an hinged timber box.drainage level, scientific intstruments, ballarat school of mines, scientific instruments -
Queenscliffe Maritime Museum
Instrument - Coastal Barometer, 1866
... J. Grimaldi - Instrument maker Langlands brothers... - Instrument maker Langlands brothers Melbourne made the Cast Iron Case ...Coastal Barometer No. 5 was installed on the Queenscliff pier in 1866. The purpose was to provide weather data to the Professional Fisherman. It was later installed in the slipway winch shed. Instrument is housed in a cast iron case.Only one left in existanceCoastal Barometer No. 5 was installed on the Queenscliff pier in 1866. The purpose was to provide weather data to the Professional Fisherman. It was later installed in the slipway winch shed. Instrument is housed in a cast iron case.Instrument: J Grimaldi, Case: Langlands Broscoastal barometer, queenscliffe, fishing industry -
Flagstaff Hill Maritime Museum and Village
Instrument - Barometer, 1867
... meteorological instrument maker... mother. Domeneck was also a scientific instrument maker. John B... mother. Domeneck was also a scientific instrument maker. John B ...Langlands Company History: Langlands foundry was Melbourne's first foundry and iron shipbuilder established in 1842, only 8 years after the founding of the Victorian colony by two Scottish immigrants, Robert Langlands and Thomas Fulton, who had formed a partnership before emigrating (1813–1859). The business was known as the 'Langlands Foundry Co'. Henry Langlands (1794-1863), left Scotland in 1846 with his wife Christian, née Thoms, and five surviving children to join his brother Robert. By the time he arrived in early January of 1847 the partnership of Robert Langlands and Fulton had dissolved as Fulton had gone off to establish his own works. It was at this time that the two brothers took over ownership of Langlands foundry. Several years later Robert retired and Henry became sole the proprietor. The foundry was originally located on Flinders Lane between King and Spencer streets. Their sole machine tool, when they commenced as a business, was a small slide rest lathe turned by foot. In about 1865 they moved to the south side of the Yarra River, to the Yarra bank near the Spencer Street Bridge and then in about 1886 they moved to Grant Street, South Melbourne. The works employed as many as 350 workers manufacturing a wide range of marine, mining, civil engineering, railway and general manufacturing components including engines and boilers. The foundry prospered despite high wages and the lack of raw materials. It became known for high-quality products that competed successfully with any imported articles. By the time Henry retired, the foundry was one of the largest employers in Victoria and was responsible for casting the first bell and lamp-posts in the colony. The business was carried on by his sons after Henry's death. The company was responsible for fabricating the boiler for the first railway locomotive to operate in Australia, built-in 1854 by Robertson, Martin & Smith for the Melbourne and Hobson's Bay Railway Company. Also in the 1860s, they commenced manufacture of cast iron pipes for the Board of Works, which was then laying the first reticulated water supply system in Melbourne. Langlands was well known for its gold mining equipment, being the first company in Victoria to take up the manufacture of mining machinery, and it played an important role in equipping Victoria's and Australia's first mineral boom in the 1850s and 1860s. Langlands Foundry was an incubator for several engineers including Herbert Austin (1866–1941) who worked as a fitter at Langlands and went on to work on the Wolesely Shearing machine. He also founded the Austin Motor Company in 1905. Around the 1890s Langlands Foundry Co. declined and was bought up by the Austral Otis Co. in about 1893. History for Grimoldi: John Baptist Grimoldi was born in London UK. His Father was Domeneck Grimoldi, who was born in Amsterdam with an Italian Father and Dutch mother. Domeneck was also a scientific instrument maker. John B Grimoldi had served his apprenticeship to his older brother Henry Grimoldi in Brooke Street, Holburn, London and had emigrated from England to Australia to start his own meteorological and scientific instrument makers business at 81 Queens St Melbourne. He operated his business in 1862 until 1883 when it was brought by William Samuel and Charles Frederick, also well known scientific instrument makers who had emigrated to Melbourne in 1875. John Grimoldi became successful and made a number of high quality measuring instruments for the Meteorological Observatory in Melbourne. The barometer was installed at Warrnambool's old jetty and then the Breakwater as part of the Victorian Government's insistence that barometers be placed at all major Victorian ports. This coastal barometer is representative of barometers that were installed through this government scheme that began in 1866. The collecting of meteorological data was an important aspect of the Melbourne Observatory's work from its inception. Just as astronomy had an important practical role to play in navigation, timekeeping and surveying, so the meteorological service provided up to date weather information and forecasts that were essential for shipping and agriculture. As a result, instruments made by the early instrument makers of Australia was of significant importance to the development and safe trading of companies operating during the Victorian colonies early days. The provenance of this artefact is well documented and demonstrates, in particular, the importance of the barometer to the local fishermen and mariners of Warrnambool. This barometer is historically significant for its association with Langlands’ Foundry which pioneered technology in the developing colony by establishing the first ironworks in Melbourne founded in 1842. Also, it is significant for its connection to John B Grimoldi who made the barometer and thermometer housed in the cast iron case. Grimoldi, a successful meteorological and scientific instrument maker, arrived in the colony from England and established his business in 1862 becoming an instrument maker to the Melbourne Observatory. Additional significance is its completeness and for its rarity, as it is believed to be one of only two extant barometers of this type and in 1986 it was moved to Flagstaff Hill Maritime Village as part of its museum collection. Coast Barometer No. 8 is a tall, red painted cast iron pillar containing a vertical combined barometer and thermometer. Half way down in the cast iron framed glass door is a keyhole. Inside is a wooden case containing a mercury barometer at the top with a thermometer attached underneath, each with a separate glass window and a silver coloured metal backing plate. Just below the barometer, on the right-hand side, is a brass disc with a hole for a gauge key in the centre. The barometer has a silvered tin backing plate with a scale, in inches, of "27 to 31" on the right side and includes a Vernier with finer markings, which is set by turning the gauge key. The thermometer has a silvered tin backing plate with a scale on the left side of "30 to 140". Each of the scales has markings showing the units between the numbers.Inscription at the top front of the pillar reads "COAST BAROMETER" Inscribed on the bottom of the pillar is "No 8". and "LANGLANDS BROS & CO ENGINEERS MELBOURNE " The barometer backing plate is inscribed "COAST BAROMETER NO. 8, VICTORIA" and printed on the left of the scale, has "J GRIMOLDI" on the top and left of the scale, inscribed "Maker, MELBOURNE". There is an inscription on the bottom right-hand side of the thermometer scale, just above the 30 mark "FREEZING" Etched into the timber inside the case are the Roman numerals "VIII" (the number 8)flagstaff hill, warrnambool, maritime village, maritime museum, flagstaff hill maritime museum & village, shipwreck coast, great ocean road, warrnambool breakwater, coast barometer, coastal barometer, barometer, weather warning, ports and harbours, fishery barometer, sea coast barometer, austral otis co, coast barometer no. 8, henry grimoldi, henry langlands, john baptist grimoldi, langlands foundry co, meteorological instrument maker, robert langlands, scientific instrument maker, thermometer, thomas fulton -
Flagstaff Hill Maritime Museum and Village
Octant, Late 18th to mid-19th century
... instrument maker... Coutinho. Henry Hemsley was a lesser-known instrument maker... was a lesser-known instrument maker and optician working in London ...An Octant is a doubly reflecting navigation instrument used primarily by sailors to measure the angular distance between two visible objects and was a forerunner of the sextant. The name comes from the Latin octo, or “one-eighth of a circle,” for the Octant’s arc which spans 45°, or one-eighth of a circle. The primary use of an Octant is to measure the angle between an astronomical object and the horizon for the purposes of celestial navigation. The estimation of this angle is known as sighting or shooting the object, or taking a sight. The angle, and the time when it was measured, can be used to calculate a position line on a nautical chart (latitude), for example, sighting the Sun at noon or Polaris at night (in the Northern Hemisphere) gives an angle by which the latitude can then be estimated. Sighting the height of a landmark on land can also give a measure of distance. History: The principle of the Octant as an instrument to measure ones latitude was first implemented around 1742-present but was superseded by the improvement of the octant to a sextant, a very similar instrument, better made and able to measure bigger angles 120°, allowing the measurement of Luna distances to give longitude when used with an accurate chronometer. The sextant started to appear around 1730 and had been attributed to by John Hadley (1682–1744) and Thomas Godfrey (1704–1749), but reference to the sextant was also found later in the unpublished writings of Isaac Newton (1643–1727). Earlier links can be found to Bartholomew Gosnold (1571–1607) indicating that the use of a Sextant for nautical navigation predates Hadley's implementation. In 1922, the sextant was modified for aeronautical navigation by Portuguese navigator and naval officer Gago Coutinho. Henry Hemsley was a lesser-known instrument maker and optician working in London in the late 17th and early 18th century. However, it should be noted that there were two Henry Hemsley opticians and instrument makers around this period. (Henry Hemsley 1, 1786-89, who had premises at 85 Fleet St London and Henry Hemsley 2, 1828-56), whose workshop was at 135-138 Radcliff Highway London. Therefore, based on the inscribed workshop address Henry Hemsley 2 is responsible for making this example.The octant is representative of its type and although not fully complete it demonstrates how 18th and 19th-century mariners determined their latitude on a chart to navigate their way across the world's oceans in the 18th and 19th century. It also demonstrates the skill and workmanship of the early instrument makers that operated from London at this time and provided most of the navigational instrumentation use by commercial and military navies of the time.Octant, ebony wooden frame and handle. Scale is missing from recess in frame. "H. Hemsley 135-138 Ratliff Highway, London", no box"H. Hemsley 135-138 Ratcliff Highway, London"flagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, navigation, navigational instrument, instrument used for navigation, sextant, henry hemsley, instrument maker, london, octant -
Flagstaff Hill Maritime Museum and Village
Instrument - Hydrometer, J Long (Joseph Long), late 19th - early 20th century
... Loftus of London instrument maker... Loftus of London instrument maker Loftus J Long Sikes Hydrometer ...This Sike’s Hydrometer was donated by the Port Fairy Customs Office as it was no longer required by them due to a change in the law. The hydrometer was part of a system for Ullaging or calculating the amount of liquid remaining in a container of liquor such as a barrel, and the amount of alcoholic content in the contents. It can also measure the free space or head space remaining. Hydrometers were used to measure the density, or relative density, of liquids from the late 1600s. In 1816 Bartholomew Sikes won the competition for the most useful accurate hydrometer. Hydrometers were commonly used by distillers, vintners, and brewers to establish accurate measures of alcohol concentration in their beverages. Following this manufacturing process, government inspectors and excise officers used them to check that the labelled indications of alcohol-proof were correct and that the right amounts of duty were being paid.The Sikes hydrometer is of local significance because of its association with the Government's Customs Office in Port Fairy, in the southwest region of Victoria. It is also associated with Bartholomew Sikes, whose design of a hydrometer was chosen in 1816 as being the most useful and accurate hydrometer. The hydrometer has evolved into the digital version available today to measure density of liquids.Sikes Hydrometer and thermometer in a fitted wooden case with crimson lining inside the lid and dark lining in the base. The case has ten vertical pegs to secure the weights. The brass hydrometer has a spherical float and eight thick brass horseshoe-shaped weights. The serial number is on each section of the float and all weights. Both sides of the float’s upper flat stem have a scale from 0-10, with five divisions between each number. The eight weights are numbered from 20 – 90 in increments of 10. The set includes a mercury thermometer mounted on an ivory back plate labelled with Fahrenheit and Centigrade Scales. The Sikes hydrometer set was made by Loftus of London. The hydrometer model is IID 510, Serial Number is 14674, calibrated by Longs, London. All parts of the float and eight weights are inscribed with Serial Number “14674” The float stem is stamped "SIKE'S IID 51o” Calibrator, "LONG LITTLE TOWER ST LONDON" The weights are numbered individually ”20”, “30”, “40”, “50”, “60”, “70”, “80” or “90” Each weight in inscribed; symbol “(J L) [inside an ova, with textured background]” The thermometer inscribed: “LOFTUS OF LONDON”flagstaff hill, warrnambool, shipwrecked coast, flagstaff hill maritime museum, maritime museum, shipwreck coast, flagstaff hill maritime village, great ocean road, measuring instruments, customs tax, weighing instrument, sike’s hydrometer, calibrator long of london, loftus of london instrument maker, loftus, j long, sikes hydrometer, scientific instrument, pressure measurement, measuring instrument, ullage tool, customs, excise duty, tax, alcohol content, proof, calibrate, standard weights and measures, tariff, scientific instrument makers, specific gravity, liquid density, alcohol testing, technology, alcohol measurement, proof spirit, wine and spirits merchants, local business, brass measuring instrument, port fairy, customs office, port fairy customs, joseph long, instrument maker -
Flagstaff Hill Maritime Museum and Village
Instrument - Telescope, Early 18th Century
... instrument maker... instrument maker James Short invents the first parabolic and elliptic... of the image. Then in 1729 Scottish instrument maker James Short ...This Dollond Day or Nigh telescope was designed to be used in any light conditions, as its name implies. Telescopes are optical instruments designed to make objects appear to be larger or closer. The discovery of the first telescope in 1608 can be attributed to Hans Lippershey of the Netherlands when he discovers that holding two lenses up some distance apart bring objects closer. He applies for a patent on his invention and this becomes the first documented creation of a telescope. Then in 1668, Newton produces the first successful reflecting telescope using a two-inch diameter concave spherical mirror. This opened the door to magnifying objects millions of times far beyond what could ever be obtained with a lens. It wasn’t until 1729 that Chester Moor Hall develops an achromatic lens (two pieces of glass with different indices of light refraction combined produce a lens that can focus colours to almost an exact point resulting in much sharper images but still with some distortion around the edges of the image. Then in 1729 Scottish instrument maker James Short invents the first parabolic and elliptic, distortion-less mirror ideal for reflecting telescopes. We now come to John Dollond who improves upon the achromatic objective lens by placing a concave flint glass lens between two convex crown glass lenses. This had the effect of improving the image considerably. Makers Information: John Dollond (1707-1761) London England he was a maker of optical and astronomical instruments who developed an achromatic (non-colour distorting) refracting telescope and practical heliometer. A telescope that used a divided lens to measure the Sun’s diameter and the angles between celestial bodies. The son of a Huguenot refugees Dollond learned the family trade of silk weaving. He became proficient in optics and astronomy and in 1752 his eldest son, Peter joined his father in an optical business, in 1753 he introduced the heliometer. In the same year, he also took out a patent on his new lenses. He was elected a fellow of the Royal Society in May 1761 but died suddenly in November and his share in the patent passed to his son Peter. In subsequent squabbles between Peter and the many London opticians who challenged his patent, Peter’s consistent position was that, whatever precedents there may have been to his achromatic lenses, his father had independently reached his practical technique on the basis of his theoretical command of Newtonian optics. As a result of maintaining his fathers patent, Dollond s became the leading manufacturer of optical instruments. For a time in the eighteenth and nineteenth century the word 'Dollond' was almost a generic term for telescope rather like 'Hoover; is to vacuum cleaner. Genuine Dollond telescopes were considered to be amongst the best. Peter Dollond (1731-1820) was the business brain behind the company which he founded in Vine Street, Spitalfields in 1750 and in 1752 moved the business to the Strand London. The Dollonds seem to have made both types of telescopes (reflecting and refracting), possessing the technology to produce significant numbers of lenses free of chromatic aberration for refracting telescopes. A Dollond telescope sailed with Captain Cook in 1769 on his voyage to observe the Transit of Venus. Thomas Jefferson and Admiral Lord Nelson were also customers of the Dollonds. Dollond & Co merged with Aitchison & Co in 1927 to form Dollond & Aitchison, the well-known high street chain of opticians, now fully part of Boots Opticians. They no longer manufacture but are exclusively a retail operation. John Dollond's experiments in optics and how different combinations of lenses refract light and colour gave a better understanding of the divergent properties of lenses. That went on to inform and pave the way for the improvement of our understanding of optics that is represented today. Dollond was referred to in his time as the "Father of practical optics" as a leader in his field he received many prestigious awards. The telescope in the collection is a good example of one of Dollond's early library telescopes. Its connection with one of England's 18th century pioneers in optical development makes it a significant and an important item to have within the collection.Telescope: Dollond's Telescope, Day or Night model navigational instrument. Telescope is mounted on wooden tripod stand that has folding legs. Brass telescope with leather sheath over barrel, adjustable angle fitting with brass wing nuts that join the legs to the top frame, which is then joined to the telescope pole by an adjustable screw fitting. Manufactured by Dollond, London. Inscription reads "Dollond London, Day or Night" and "DOLLOND LONDON"flagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, telescope, dollond, dollond london, day & night telescope, floor-standing telescope, optical instrument, john dollond, peter dollond, achromatic telescope, heliometer, light refraction, instrument maker, lens, transit of venus, astronomical telescope, concave lens, library telescope, dollond telescope, day or night, day or night telexcope, scientific instrument, navigation, navigational instrument, astronomy -
University of Melbourne, Burnley Campus Archives
Instrument - Mercury Barometer and Thermometer, A.L. Franklin, Early twentieth century
... instrument maker, A.L.Franklin. The column of mercury is supported...A.L.Franklin, established 1919, scientific instrument... temperature A.L.Franklin, established 1919, scientific instrument ...A Fortin style mercury barometer from well-known Australian instrument maker, A.L.Franklin. The column of mercury is supported by the pressure of air on the free surface of the mercury in the cistern at the bottom. Its level can be adjusted to a datum using the screw at the bottom and then the height of the column can be accurately read off using a vernier scale at the top. Attached to a backing timber board with a thermometer. Thermometer made by Townson and Mercer. Metal vertical hanging eyelet.A.L.Franklin, established 1919, scientific instrument makers, Brookvale, NSW; A.L Franklin Sydney No. 457; Townson and Mercer Distributors Pty Ltd throughout Aust and NZ.;weather station, soil science, science, student outside activities, measurements, air pressure, atmospheric pressure, air temperature -
Federation University Historical Collection
Document - Technical School Reports, Ballarat School of Mines and Ballarat Junior Technical School Term Reports on Apprentices, 1949-1963
... instrument maker... keith mcilvena chris van gaans william warren instrument maker ...Numerous reports for students at the Ballarat Junior Technical School . Lists many students, and results in a range of subjects and techniques.apprentice, ballarat junior technical school, victorian railway apprentices, blacksmiths, coppersmithing, car painter, electrical fitting, boilermaker, springmaker, engineering, electrical wiring, panel beating, plumbing and gasfitting, printing, composing, carpentry and joinery, apprenticeship commission of victoria, d. baddelry, s. bridges, r. vincent, j. burrow, w. prowse, w. twaites, r.e. crump, bruce linklater, l.l. wood, john g. schepis, b. antonio, j. colligam, l. goldsmith, d. gilbin, r. skinner, w. vagg, p.w. stoddart, a.g. yarwood, d. england, w. loo, p.j. reidy, g.d. sleep, p. frempton, d.g> kelso, m.m.l. boersma, geoffrey hayes, a. blackburn, w. liddicoat, r.s. pike, a. bamford, v. mason, r. adriaans, j. gullock, j.p. dellaca, j. rinaldi, j. minehan, n. spicer, keith mcilvena, chris van gaans, william warren, instrument maker, ivan f. crowley, r. eastman, c. maccann, r.s. young, kevin bell, g. carroll, g. waldron, l.w. wilson, r. morrison, s. ellis, r.h. holmes, b. hubbard, r. quick, k. roberrts, j. blood, k. peacock, w. mott, r.f. rea, j. colligan, n. d'angri, s. fumberger, john gallagher, donald tozer, james skilbeck, a.j. mong -
Bendigo Historical Society Inc.
Tool - OERTLING SCALES IN GLASS CASE
... where he joined instrument-maker and assayer George Makins... joined instrument-maker and assayer George Makins (1815-1893 ...Beam balance (gold scales) made by Oertling - London. The balance is in a case made of mahogany and fully glassed, it has two draws. The brass scales are built into the case. The maker's name is present on the base of the scale. There is a brass knob that fits in the front to make adjustment to the scales and also on either side of the exterior case to set the top of the scales. There are two front draw, the left one is missing the drawer knob.mining, equipment, scale, ludwig oertling (1818-1893) was born near hamburg and gained his apprenticeship in instrument-making with his brother johann. he immigrated to london in 1840, where he joined instrument-maker and assayer george makins (1815-1893). oertling collaborated with makins and built his first balance, which was "a twin-column assay type with a light lattice beam". by 1851, the year of the great international exhibition of the works of all nations, oertling had established his own instrument-making business, employed five instrument-makers, and by 1861, ten staff were engaged in designing and making instruments, principally analytical balances. oertling's first twin-column beam balance was the prototype for all oertling assay balances that were produced during the next century and exported to the british colonies: australia, new zealand, canada, south africa and india, to europe and america. -
Linton and District Historical Society Inc
Invoice, Hugh Gray and Son Invoice, 1877
... , "Mechanists and Philosophical Instrument Makers" of Ballarat. ... and Philosophical Instrument Makers" of Ballarat. Hugh Gray and Son Invoice ...Invoice issued to 'Mr. Lewis' (i.e. Lewers) [Manager of the Bank of New South Wales at Linton from Hugh Gray & Son, of Ballarat, for cleaning, lacquering and adjusting gold beam and scales. A charge for "cartage" has been added to the invoice by R. Ching. The invoice is marked "paid" twice, first by a representative of Hugh Gray & Sons, then by R. Ching (Richard Ching, who ran contracting and carting businesses at Linton).Invoice issued on March 28th, 1877, by Hugh & Sons, "Mechanists and Philosophical Instrument Makers" of Ballarat. bank of new south wales linton branch, samuel lewers, richard ching -
Federation University Historical Collection
Instrument - Scientific Equipment, Miner's Dial, c1893 - 1901
... On suppliers label: "Instrument maker to the surveying...: "Instrument maker to the surveying and engineering departments of her ...Used for surveying classes at the Ballarat School of Mines. Purchased/acquired during Queen Victoria's reign. The 1893 Ballarat School of Mines Calendar states that mine surveying instruments "always at the disposal of the students" including "one miner's dial".A surveying instrument consisting of theodolite with single crosshair(.1) mountable on a magnetic compass (.2), designed to sit inside a polished wood carry box. Serial Number 4470On suppliers label: "Instrument maker to the surveying and engineering departments of her Majesty's Government of South Australia"ballarat school of mines, surveying, scientific instruments, scientific objects, otto boettger, optician, miner's dial -
Queenscliffe Maritime Museum
Instrument - Sextant in wooden box
... instrument maker, Queen Street, Melbourne... and scientific instrument maker, Queen Street, Melbourne A sextant in its ...Sextant used by J P Larken, Government Marine SurveyorThe sextant has been the primary position fixing tool of the marine surveyor for 200 years used to measure angles between beacons or points for hydrographic surveys. A sextant in its own wooden box.On inside box lid; 'A. E. Parson surveying and scientific instrument maker, Queen Street, Melbournesextant, jp larken, marine surveyor -
Flagstaff Hill Maritime Museum and Village
Binnacle, Early to mid 20th Century
... . Wilson and Sons, Nautical Instrument Makers of Sunderland... & SON LTD (WILSON & GILLIE), NAUTICAL INSTRUMENT MAKERS, NORTH... for four years to J.J. Wilson and Sons, Nautical Instrument Makers ...Mr John Wilson Gillie was born on the 31st of March 1864. On the 31st of July 1880 he was apprenticed for four years to J.J. Wilson and Sons, Nautical Instrument Makers of Sunderland. Following the apprenticeship he spent six months to a year as an ‘improver’ in Glasgow, and then started a new company ‘Wilson and Gillie’ in North Shields. At this time sail had just given way to steam and wooden ships to steel, and the railways were competing with colliers for the carrying of coal from the North East of England to London and the South. In 1858 only seven out of 44 shipyards on the Tyne were using iron, but by 1862 there were ten, employing around 4,000 men. These changes had a significant effect on nautical instrument manufacturers, as the magnetic compass for a wooden sailing vessel was very simple and required little in the way of compensation. For steel vessels much more was required and this was a period of great development, both in the compass bowl and the binnacle in which it was housed. In 1870 Sir William Thomson (later Lord Kelvin) designed his dry card standard compass, which completely replaced all previous designs. Wilson and Gillie started as agents for the Thomson compass, but later J.W. Gillie, using similar principles, redesigned the compass suspension and patented the ‘UNIT’ standard compass. It became popular with local shipowners and shipbuilders. In 1910 the firm of John Lilley and Son (which had been established in London in 1812), found themselves in financial difficulties and were saved with the help of John Wilson Gillie, who established, on the 8th of August 1911, a new firm of John Lilley and Son Limited. John Lilley and Son had been the sole London agents for Sir William Thomson, a very enviable position during this period, when the Thomson compass led the field. Unfortunately, Mr. Lilley had quarreled with the Glasgow company, who withdrew the agency and established their own branch in London (later to become Kelvin White and Hutton). On November 7th 1913, the firm of John Lilley and Son Limited of London amalgamated with Wilson and Gillie of North Shields, and after this date instruments manufactured by the two companies bore the name John Lilley and Son Limited of London and North Shields. During the 1930s many of the London nautical instrument makers were in difficulties, including John Lilley and Son Limited and Reynolds and Son, Dobbie and Clyde Limited, and Mr. J.W. Gillie arranged an amalgamation between these two companies. The new firm became Lilley and Reynolds Limited. In 1943, with estate duties in mind, the North Shields company was reconstituted and took the name of John Lilley and Gillie Limited, although the shareholders, directors and personnel remained unchanged In the early 1970s Lilley and Gillie developed close links with Observator in Rotterdam, who manufactured one of the first fully reliable transmitting magnetic compass systems. The Observator shareholders, Holland America Line, bought the share capital of John Lilley and Gillie Limited., but retained all the personnel and the directors. (See Links for more information)A significant item of early 20th century marine navigational equipment made by a leading manufacturer in the field from a company that is still producing marine navigational instruments today. John Lilleys company began in 1812 growing at a time when the transition of compasses from timber ships, to steel vessels. Compasses at this time required a method of compensation to allow their inclusion in steel vessels without magnetic deviation. This therefore was a period of great development, both in the compass bowl and the binnacle in which it was housed and the Lilley company were leaders in the field. Ships binnacle, wood with brass fittings, consists of 2 brass lamp holders, place for compass, Also has an inclinometer with a scale 40 to 0 to 40, one red and one green iron Kelvin compensation balls, one on each side of binnacle denoting port and starboard, a brass cylinder attached perpendicular at the rear for storing a Flinders Bar, 2 hinged cupboards containing adjustable wooden racks with drilled holes in them to hold iron Heeling error magnets.Textured brass plate attached to front stating "JOHN LILLEY & SON LTD (WILSON & GILLIE), NAUTICAL INSTRUMENT MAKERS, NORTH SHIELDS" . Inclinometer has "JOHN LILLEY & SON LTD (Wilson & Gillie) LONDON & NORTH SHIELDS" engraved. flagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, binnacle, john lillie & son ltd, compass -
National Wool Museum
Book, Bainbridge Veterinary Instruments
... "Bainbridge Veterinary Instruments", catalogue, c.1988... and veterinary instrument makers and precision engineers, North Fitzroy ..."Bainbridge Veterinary Instruments", catalogue, c.1988. Published by Bainbridge Bros., surgical and veterinary instrument makers and precision engineers, North Fitzroy.Book / catalogue of veterinary instruments produced by Bainbridge Bros., c.1988.animal health, bainbridge bros, veterinary instruments -
The Ed Muirhead Physics Museum
KELVIN CURRENT BALANCE
... ?? (Research on instrument makers catalogues has not been undefrtaken... on instrument makers catalogues has not been undefrtaken Photographed ...Last used in a Physics 2 experiment in the 1940-50s. Refer to the printed version Part 2 Laboratory Manual (ed. Natalie Allen) for further details. Likely acquisition in early 1900s by Lyle?? (Research on instrument makers catalogues has not been undefrtaken Photographed June 2003 (Nicola) -
City of Greater Bendigo - Civic Collection
Equipment - Rolling Parallel Ruler, Kilpatrick and Co
... Kilpatrick and Co were London based Mathematical Instrument... and Co were London based Mathematical Instrument Makers ...Kilpatrick and Co were London based Mathematical Instrument Makers, Opticians, Goldsmiths, Jewellers and Watchmakers who operated in Melbourne at various Collins Street addresses between 1876 and 1898. Believed to have been a part of the Shire of Marong's surveying equipment.Rectangular brass ruler with beveled edges and rollers on underside. Housed in custom made hinged wooden box. Centre front; Kilpatrick & Co., Londoncity of greater bendigo surveying, shire of marong -
Royal Australian and New Zealand College of Obstetricians & Gynaecologists (RANZCOG)
Tool - Wooden vaginal speculum with plug, Henry Galante et Fils, c. late 19th century
... instrument maker active from the late 1800s. ... to be made of metal. Henry Galante was a French instrument maker ...The plug (obturator) could be used to apply medication to the mouth of the cervix. Wooden speculums were in use in the second half of the 19th century, before it became commonplace for speculums to be made of metal. Henry Galante was a French instrument maker active from the late 1800s. Speculum consisting of wooden case and introducer. "Galante" inscribed on lower side of case and "2" near the top of the case."Galante"obstetrics -
Orbost & District Historical Society
toiletry kit
... was in the Air Force. Roy was an instrument maker in the air force. He... was in the Air Force. Roy was an instrument maker in the air force. He ...This kit belonged to Roy Basil Cope an Orbost jeweller. He was in the Air Force. Roy was an instrument maker in the air force. He was born on 14 Aug 1907 at Korumburra, Victoria, Australia and died in 1985 at Orbost. He was married to Emily Ruth Powell who was born in Orbost in 1907. . An every-day toiletry kit issued by the Air Force . It is a brown leather zippered case. It contains a mirror, shoelaces, a razor blade, an oblong container, a clothes brush, a hair brush, two cylindrical containers and a metal soap container with rounded corners.On the fornt of the brown leather zippered case is R.B.C. 41738 made in Englandpersonal-effects cope-roy toiletry-kit -
Royal Australian and New Zealand College of Obstetricians & Gynaecologists (RANZCOG)
Tool - Obstetric forceps used by Dr Michael Kloss, Jetter and Scheerer
... Jetter and Scheerer were a surgical instrument maker... Jetter and Scheerer were a surgical instrument maker founded ...Jetter and Scheerer were a surgical instrument maker founded in Germany in 1867. Their company symbol is that of a serpent curled around a rod, surmounted by a coronet/crown. This instrument was part of a collection of instruments used by Dr Michael Kloss in his medical practice. Dr Kloss subsequently donated this collection to the College.Metal forceps, consisting of two blades which lock together with a pin fitting. The handle of one of the forceps blades is engraved with the word 'Kloss', both on the outside and on the inner aspect. The number '26' is engraved on the inner aspect of both blades near the pin joint. The upper shaft of one blade is engraved with the word 'HOSON'. The blade is also engraved with a derivation of the Rod of Asclepius, featuring a serpent wrapped around a rod, with the entire design topped by a crown.'Kloss' '26' 'HOSON'obstetrics -
Royal Australian and New Zealand College of Obstetricians & Gynaecologists (RANZCOG)
Tool - Surgical spreader used by Dr Michael Kloss, Jetter and Scheerer
... Jetter and Scheerer were a surgical instrument maker... Jetter and Scheerer were a surgical instrument maker founded ...Jetter and Scheerer were a surgical instrument maker founded in Germany in 1867. Their company symbol is that of a serpent curled around a rod, surmounted by a coronet/crown. This instrument was part of a collection of instruments used by Dr Michael Kloss in his medical practice. Dr Kloss subsequently donated this collection to the College.Metal spreader. Instrument consists of two arms and a set of spring loaded handles, with a pin lock to lock the spreader at particular apertures. Each arm ends with a 'z' shaped section with a narrow foot. The outside of each foot is grooved for grip. One arm of the spreader is engraved with a derivation of the Rod of Asclepius, featuring a serpent wrapped around a rod, with the entire design topped by a crown. Each arm is engraved with the number '355' on the inner aspect near the join point.obstetrics -
Royal Australian and New Zealand College of Obstetricians & Gynaecologists (RANZCOG)
Tool - Ovum forceps used by Dr Michael Kloss
... Jetter and Scheerer were a surgical instrument maker... Jetter and Scheerer were a surgical instrument maker founded ...Jetter and Scheerer were a surgical instrument maker founded in Germany in 1867. Their company symbol is that of a serpent curled around a rod, surmounted by a coronet/crown. This instrument was part of a collection of instruments used by Dr Michael Kloss in his medical practice. Dr Kloss subsequently donated this collection to the College.Metal ovum forceps. Instrument resembles a set of scissors, with a ratchet adjacent to the handle to lock them at particular apertures. The end of each arm of the scissors ends with a metal loop, with grooves on the inner aspects of the loops for grip. The inner aspect of the forceps are engraved with the number '99'. The forceps are also engraved with a derivation of the Rod of Asclepius, featuring a serpent wrapped around a rod, with the entire design topped by a crown.obstetrics -
Royal Australian and New Zealand College of Obstetricians & Gynaecologists (RANZCOG)
Tool - Surgical scissors used by Dr Michael Kloss, Jetter and Scheerer
... Jetter and Scheerer were a surgical instrument maker... Jetter and Scheerer were a surgical instrument maker founded ...Jetter and Scheerer were a surgical instrument maker founded in Germany in 1867. Their company symbol is that of a serpent curled around a rod, surmounted by a coronet/crown. This instrument was part of a collection of instruments used by Dr Michael Kloss in his medical practice. Dr Kloss subsequently donated this collection to the College.Metal surgical scissors. Consists of two arms with handle grips, a narrow shaft, and small cutting blades at the end of each arm. The inner aspect of the scissors is engraved with the number '47'. The shaft is engraved with a derivation of the Rod of Asclepius, featuring a serpent wrapped around a rod, with the entire design topped by a crown.'47'obstetrics -
Flagstaff Hill Maritime Museum and Village
Telescope, 1780-1820
... is recorded as working as an optician and scientific instrument maker... and scientific instrument maker in Manchester at 277 Deansgate Street ...Not much is known about William Rothwell other than he is recorded as working as an optician and scientific instrument maker in Manchester at 277 Deansgate Street from 1780 until 1820. An entry in the “Complete History of the Trades of Manchester” published in 1822, in which the author describes Mr William Rothwell as an intelligent young man who is conversant in several languages. He went on to describe him as an philosophical instrument maker of optical and mathematical objects, specialising in spectacles, all sorts of surveyors instruments as well as eye glasses of all types. At present that is all that is known of William Rothwell other than his products were made to the highest standards of the time. Today his products are now actively sought by collectors and are currently fetching high prices at auction sales overseas. The telescope is a rare item even though not much is known about Rothwell's history his scientific instruments and optical items fetch high prices when they become available as collectors look for rare and well made items from the 18th and 19th centuries. Its completeness and good condition make it a very good addition to the collection at Flagstaff Hill. A three draw military telescope brass with main cylinder section made of wood, main lens is removable for cleaning.Marked "Rothwell, Manchester"flagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, telescope, william rothwell, scientific instrument, manchester optician, optician -
Federation University Historical Collection
Scientific Instrument, Theodolite: Early 1900s, c1860
... instrument maker... instrument maker theodolite surveying european instrument importers ...The theodolite is used in surveying and measures vertical and horizontal angles. Placed on a tripod, it is used to find angles in road building, tunnel alignment and other civil-engineering work. The theodolite was used at Ballarat School of Mines in the surveying course. It is possible that this instrument was imported by Flavelle Bros & Co having been made to their order by a European instrument makerTheodolite (without a matching tripod) with four leveling screws at the base. Telescope not fully rotatable, ends can be interchanged. Underslung levelling bubbletheodolite, surveying, european instrument, importers, ballarat school of mines, flavelle bros & co, measuring angles, road building, civil engineering -
Royal Australian and New Zealand College of Obstetricians & Gynaecologists (RANZCOG)
Tool - Surgical scraper used by Dr Michael Kloss, Jetter and Scheerer
... and Scheerer were a surgical instrument maker founded in Germany... and Scheerer were a surgical instrument maker founded in Germany ...The '3' on this instrument indicated it was size 3. Jetter and Scheerer were a surgical instrument maker founded in Germany in 1867. Their company symbol is that of a serpent curled around a rod, surmounted by a coronet/crown. This instrument was part of a collection of instruments used by Dr Michael Kloss in his medical practice. Dr Kloss subsequently donated this collection to the College.Metal scraper. Instrument consists of a large, six sided handle section, a short, thin shaft and a small, oval shaped scoop at the end of the shaft. The handle at the proximal end is in the shape of an elongated teardrop, hollowed out at centre. The number '3' is engraved on the shaft of the instrument. The shaft is also engraved with a derivation of the Rod of Asclepius, featuring a serpent wrapped around a rod, with the entire design topped by a crown.'3'obstetrics -
Royal Australian and New Zealand College of Obstetricians & Gynaecologists (RANZCOG)
Tool - Surgical scraper used by Dr Michael Kloss, Jetter and Scheerer
... and Scheerer were a surgical instrument maker founded in Germany... and Scheerer were a surgical instrument maker founded in Germany ...The '3' on this instrument indicated it was size 3. Jetter and Scheerer were a surgical instrument maker founded in Germany in 1867. Their company symbol is that of a serpent curled around a rod, surmounted by a coronet/crown. This instrument was part of a collection of instruments used by Dr Michael Kloss in his medical practice. Dr Kloss subsequently donated this collection to the College.Metal scraper. Instrument consists of a large, six sided handle section, a short, thin shaft and a small, round scoop at the end of the shaft. The handle at the proximal end is in the shape of an elongated teardrop, hollowed out at centre. The number '3' is engraved on the shaft of the instrument. The shaft is also engraved with a derivation of the Rod of Asclepius, featuring a serpent wrapped around a rod, with the entire design topped by a crown.'3'obstetrics -
Geoffrey Kaye Museum of Anaesthetic History
Photograph
... in conjunction with London scientific instrument-maker, Charles King... instrument-maker, Charles King. The Minnitt apparatus met ...Robert James Minnitt introduced the concept of self-administered analgesia, using an apparatus designed and built in conjunction with London scientific instrument-maker, Charles King. The Minnitt apparatus met with considerable success and led to further modifications, including the introduction of the Queen Charlotte gas-air analgesia apparatus in 1936, manufactured by the British Oxygen Company.Black and white photograph of a Minnitt gas/air analgesia apparatus, in a Queen Charlotte case. The case is standing open with the apparatus inside. A label with instructions is on the left side of the case, and the apparatus is on the right side of the case. A nitrous oxide cylinder tank and valve is connected to a small box with a regulator. A tube with a breathing mask is attached to the box. The Queen Charlotte case has hinges on the side and a handle on the top.minnitt gas air apparatus, minnitt, nitrous oxide, queen charlotte case, anaesthetic equipment -
Bendigo Military Museum
Instrument - BUGLE, GERMAN WW1, Enemy Forces, 1914-1918
... of Hohenzollern). 2. CHR REISSER was a well known instrument maker... 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