Showing 188 items
matching mechanical engineering
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Kiewa Valley Historical Society
Ron White's Collection - 1920 - 2019
... of Mechanical Engineering at Footscray Technical School in 1946. He.../plaque C) Ron White's Certificates: Diploma of Mechanical... was born in 1920. He received a Diploma of Mechanical Engineering ...Ron White was born in 1920. He received a Diploma of Mechanical Engineering at Footscray Technical School in 1946. He started work as a laboratory assistant and after several promotions was appointed Senior Operator in 1948. In 1949, he was Engineer, Grade 1 (Hydro Areas). After further promotions he became Assistant Area Engineer, Rubicon at new Eildon Power Station and Area Engineer, Kiewa in commissioning Mt Beauty Terminal Station and West Kiewa Power Station.. By 1956, he was the Area Operations Engineer at Kiewa and four years later the Kiewa Electrical Superintendent (Operations and Maintenance) . In 1961, he was officially recognised as deputy for the General Superintendent, Kiewa. In 1966 he was appointed General Superintendent Kiewa and Kiewa became 'a branch of the Transmission Department'. In 1974, the Rubicon / Eildon Area was also under Ron's control. His title was "Principal Hydro Engineer, Hydro Division, Transmission Operations Department. He held this position until his retirement in 1985.Ron White was an important identity in his role as Principal Hydro Engineer from 1966 to 1985 after the completion of the Kiewa Hydro Electric Scheme. His long period of service involved him in the construction, operation and maintenance of the SECV's Hydro Electric Schemes and administration of related catchment areas. He had a close association with the local communities and care for the welfare of employees. He lived in Mt Beauty and was well respected in the community and beyond. He passed away on 30 September 2019, aged 99 years.A) History of Ron White's Working Life: including papers relating to "Promotion & Staff Appointment" B) Ron White's Retirement - 11th Jan. 1985: papers, cards, letters, photos, disc/plaque C) Ron White's Certificates: Diploma of Mechanical Engineering; First Aid; D) Ron White's Correspondence - miscellaneous E) Ron White's History of the 'Kiewa Scheme' from 1936- 1966. Written 1986 F) Ron White's Photo album Includes photos of him and the 2003 bushfires G) Miscellaneous Photos (not labelled) from Ron's photo album. Possibly relatives including nieces and nephews. H) Pewter Mug presented to Ron - Water Board I) Wall hanging presented to Ron - Scouts J) Ron White's Slide Ruler & Mathematical Instruments K) Collection of 7 books owned by Ron L) Starting Pistol Caps box M) Ice-cream serverF) One photo of Ron with 'Ken Connors'. One photo with 'l to r: Norm Middleton, Graham Napier, Ron White, Les Peart.' G) 2003 fires has a note re time, date and whereabouts of fires H) "Presented To / Ron White / In Appreciation For Service / To The / Kiewa Valley / Water Authority / And / Its predecessor Bodies / December 1994 I) Wall hanging: On emblem - "Lord Baden-Powell Society / The Scout Association of Australia". On Name Plate below - Ronald K. White 1989" J) mathematical Instruments have 'R. W' embossed in red on the corner of the cover M) 100 Straitline, Starting Pistol Caps N) National Ice-cream Server with stainless steel spring Size 20 ron white, hydro engineer, kiewa hydro electric scheme -
Federation University Historical Collection
Clothing - Costume, Ballarat College of Advanced Education T-Shirt, 1983
... completed a Diploma of Mechanical Engineering at the Ballarat... from 1949-1960 was a Lecturer in Mechanical Engineering ...This T-shirt was worn by John Barker who was the son of E J Barker who from 1949-1960 was a Lecturer in Mechanical Engineering at the Ballarat School of Mines (SMB). Then from 1960-1964 was Vice Principal at SMB and was Principal of SMB from 1964-76. Then from 1976-1987 was Foundation Director of the Ballarat College of Advanced Education (BCAE) until his retirement. The Library at Federation University was named in honour of E J Barker. John completed a Diploma of Mechanical Engineering at the Ballarat College of Advanced Education and a few years later a Bachelor of Engineering. John was a keen sportsman particularly enjoying hockey and sailing.White t-shirt with blue coloured ribbed neck and cuff bands and stencil of logoPrinted on front - Ballarat C.A.E. Australian Inter Collegiate Championships - Sydney - 1983 ballarat college of advanced education, t-shirt, john barker, e j barker, australian inter collegiate championships, sport, costume, uniform, textiles -
Federation University Historical Collection
Costume, Ballarat School of Mines Windcheater, c 1980
... completed a Diploma of Mechanical Engineering at the Ballarat... from 1949-1960 was a Lecturer in Mechanical Engineering ...This windcheater was worn by John Barker who was the son of E J Barker who from 1949-1960 was a Lecturer in Mechanical Engineering at the Ballarat School of Mines (SMB). Then from 1960-1964 was Vice Principal at SMB and was Principal of SMB from 1964-76. Then from 1976-1987 was Foundation Director of the Ballarat College of Advanced Education (BCAE) until his retirement. The Library at Federation University was named in honour of E J Barker. John completed a Diploma of Mechanical Engineering at the Ballarat College of Advanced Education and a few years later a Bachelor of Engineering. John was a keen sportsman particularly enjoying hockey and sailing. He died as a result of an accident on 16 June 1994.This orange coloured cotton knit windcheater has a built-in v-shaped rib fabric inset at the top front. The rib is also at the round neck, cuffs and waist. On the front is printed in black, the crest with the words 'School of Mines' around the crest and 'Ballarat' underneath. john barker, edward john barker, ballarat college of advanced education, wincheater, ballart school of mines -
Kiewa Valley Historical Society
Books - Ron White Collection
... Ron White was b. 1920. he received a Diploma of Mechanical... was b. 1920. he received a Diploma of Mechanical Engineering ...Ron White was b. 1920. he received a Diploma of Mechanical Engineering at Footscray Technical School in 1946. He worked for the SECV from 1948 until 1985. In 1961 he was officially recognised as deputy for the General Superintendent, Kiewa. He was 'Principal Hydro Engineer, Hydro Division, Transmissions Operations Deparment - a position held until his retirement in 1985. Ron White studied engineering at Footscray Technical School. His books are part of his collection as he was principal Hydro Engineer from 1966 to 1985 with the SECV on the Kiewa Hydro Electric Scheme. He had a close association with the local communities and care for the welfare of employees. He lived at Mt Beauty and passed away on 30th September 2019, aged 99 years.1. x7 Charles Dickens novels. All red hard cover and bound with 764 pages. Gold embossed title & author on spine. 2. x2 English Books used at Footscray Technical School. Green hard cover with black title and print and Blue cardboard cover with black title and print. 3. x8 Science and Maths Books used at Footscray Technical School. All hard cover text booksAll with 'R. White' written on cover pageron white, secv engineer, charles dickens, footscray technical school, khes -
NMIT (Northern Melbourne Institute of TAFE)
Brochures: Courses Preston College of TAFE 1984 and 1985
... drafting, Mechanical Engineering Mechanical design drafting, Music..., Mechanical/Electrical detail drafting, Mechanical Engineering ...Brochures of varying sizes [1984/1985]. Accounting, Art, Bookkeeper-typist, Building detail drafting Pre-employment program, Business studies, Business TOP, Childcare, Civil Engineering Drafting Survey & Mapping, Computer users certificate, Drama TOP, Electronics, Finished art, General, General studies, Higher school certificate for adults, Management, Mechanical/Electrical detail drafting, Mechanical Engineering Mechanical design drafting, Music, Office & Secretarial studies, Personnel & training officer course, Photography, Piano tuner technician, Physical & natural science, Science laboratory, Sales & Marketing, Secretarial, Secretarial studies, Supervision Certificate, Trades, Other than English brochures X 7 ?Arabic, Greek, Italian, Vietnamese plus others. preston college of tafe, handbooks, brochures, nmit -
Federation University Historical Collection
Document - Document - Design, E J Barker: Ballarat College of Advanced Education: Final Year Project Report; "Internal Combustion Engine Driven Heat Pump", 1984
... Mechanical Engineering Department Ballarat C.A.E. Final... Mechanical Engineering Department Ballarat C.A.E. Final Year Report ...Mechanical Engineering Department Ballarat C.A.E. Final Year Report submitted by John Barker, 1984. The Report was "Internal Combustion Engine Driven Heat Pump". His supervisor was L E Taylor. The location of the experimental rig was in the Thermodynamics Laboratory at Ballarat Council of Advanced Education. This project involved the design, construction and limited testing of an Internal Combustion Engine Driven Heat Pump, utilising full waste heat recovery, for the purpose of heating mains supply water. John is the son of Jack Barker, foundation director of Ballarat College of Advanced Education.75 page report - typed with photos and diagrams. 38 pages - Appendix 1-8engineering, vice principal, foundation director, ballarat college of advanced education, bcae, mount helen campus, engineering drawing, design, manufacture, heat engines, internal combustion engine, report, supervisor, l e taylor, john barker, internal combustion engine driven heat pump, heat recovery, thermodynamics laboratory -
Federation University Historical Collection
Booklet, Charles Boyd, The School of Mines Ballaarat Annual Report, 1882, 1882
... of the Lecturer in Telegraphy, Report of the Lecturer in Mechanical... of the Lecturer in Telegraphy, Report of the Lecturer in Mechanical ...The School of Mines Ballaarat Annual Report 24 January 1882, Additional Examination Statute, Certificates Granted by Council, Copy of letter received from the Honble. Francis Ormond MLC, Extracts from Visitors' Book, Fees, Form of Bequest, Life Governors, Museum open to Visitors, Office Bearers, Paper of Particulars, Report of the Curator of the Museum and Library (with plans), Report of the Superintendent of Laboratories, Report of the Lecturer in Telegraphy, Report of the Lecturer in Mechanical Engineering, Statement of Receipts and Expenditure for the year 1881, Subjects and Lecturers, Subjects and Examiners, Subscriptions and Donations from 1 January to 31 December 1881, The Lignite Deposit at Skipton (with Section and Plan)Ballarat School of Mines Annual Report. Pale brown booklet of 64 pages. A plan of the Ballarat School of Mines shows the position of the Botanical Gardens, and the Ballarat School of Mines Museum. Geological Sketch Map of Country in the Neighbourhood of Skipton and Plan showing site of Coal Discovery. Skipton Coal Discovery - Section of Windlass Shaft. .2) is a leatherbound copyballarat school of mines, coal, plan, ballarat school of mines botanical gardens, ballarat school of mines museum, museum, annual report, james oddie, w. p. bechervaise, s. e. friggis, f. j. martell, w. h. nicholls,, e. i. rosenblum, h. r. caselli, thomas mann, theos. williams, f. m. krause, alf. mica smith, walter d. campbell, w. h. shaw, charles kent, andw. berry, robert adam, wm. lant carpenter, henry parkinson, h. b. de la poer wall, w. h. brockenshire, arthur parker, c. davies, simon richards, c. r. blackett, david jones, wilberforce dyke, kr. r. krauel, duncan love, william ralph heaton, edward dowling, octavius vaughan morgan, william denton, e. h. grimwade, james hunter, the honble. francis ormond, ferdinand krause, a.a. buley, j. cosmo newberry, w.c. kernot, john lewis, j.m. bickett, james bickett, fees, annie barnett, annette budden, isabel clinton, john dimsey, agnes pobjoy, charlotte shaw, bernard o'dowd, bernard patrick o'dowd, josiah wasley, ferdinand von mueller, william kernot, john lynch, william henderson, henry richards caselli, w.p. berchervaise, e.i. rosenblum, w.h. nicholls, lignate, samuel figgis, mary drury, w. longley, botanical reserve, botanical gardens, francis ormond, george russell, william foster stawell, w.j. clarke, rivett henry bland, john warrington rogers, j. lonie, s.e. figgis, r.f. hudson, w. robertson, e.l. rosenblum, theophilus williams, andrew berry, henry sutton, h. rosales, state school classes, calcutta international exhibition, examinations, h.b.m ship bounty, certicates, walter charles kernot, william tunbridge, mary skelton, cartherine moran, mary rose usher, margaret ellen brophy, william burbridge, andrea tuxen, elizabeth curnow, francis campigi, james s. morrison, arthur hogue -
Federation University Historical Collection
Book, Ballarat College of Advanced Education Annual Report, 1979, 1979
... were made to the lower level of the mechanical/Civil... to the lower level of the mechanical/Civil Engineering wing ...In 1980 the President was M.B. John. In 1980 the administration staff moved out of the lower level of the library and the space was converted for teaching use. Extensive alterations were made to the lower level of the mechanical/Civil Engineering wing for the housing of Applied Geology and Environmental Science. Car parking facilities were extended at Mt Helen.Orange soft covered book of 35 pages. Contents include: Courses, student numbers, Victorian School of Forestry, financial statement, Education Building (T Building) completed, Gillies Street Campus, Art building under construction, Great Hall (1870s Founders Hall) completion date expected to be mid 1980, Centenary Appeal, E.J. Barker Library, Computer Centre, bookshop . ballarat college of advanced education, bcae, mt helen, mount helen, library computer -
Federation University Historical Collection
Photograph - Photograph (Black & White), Senior Members of the Ballarat School of Mines Staff, 1900, 1900
... (Mechanical Engineering); Arthur Garrard (Battery Manager); Henry Hall... (Clerk); Alfred E.C. Kerr (Mechanical Engineering); Arthur ...Staff Members of the Ballarat School of MinesA black and white photograph showing 18 men. Standing L-R: S.B. Vial (Chemistry); W. Doepel (Clerk); Alfred E.C. Kerr (Mechanical Engineering); Arthur Garrard (Battery Manager); Henry Hall (Drawing); W. Kerr Grant (Mathematics); C.E. Campbell (Photography); J.M. Sutherland (Electricity); H.R. Murphy (Assayer); Charles A. Dean (Cyanide Works). Sitting: Daniel Walker (Chemistry); Thomas S. Hart (Mineralogy & Curator); Fred. J. Martell (Registrar); Alfred Mica Smith, Senior Professor (Chemistry, Metallurgy, etc); J.S. Dawburn (Engineering & Surveying); Dr J.F. Usher (Materia Medica). Seating (Front): P.A. Osborne (Assistant Assayer); Godfrey Hart (Museum). .2) is a framed copy of the photograph in a carved timber from from Peake's BallaratFramer's plate 'Peake's Ballarat' Framed mount 'The Ballarat School of Mines, Staff 1900'ballarat school of mines, alfred mica smith, daniel walker, thomas hart, s.b. vial, w doepel, alfred kerr, arthur garrard, henry hall, w kerr grant, ce campbell, john sutherland, hr murphy, charles dean, fred martel, j.s. dawburn, j.f. usher, p.a. osborne, godfrey hart, c.e. campbell, w. kerr grant, kerr grant -
RMIT Design Archives
Domestic object - Object, General Electric KE12 Kettle, designed by Barry Hudson
... (1935-2008) studied Mechanical Engineering at the Melbourne... with a contrasting base. Barry Hudson (1935-2008) studied Mechanical ...The GE12 Electric Kettle was designed by Barry Hudson for General Electric and in 1978 won the Australian Design and the Prince Philip Prize awards for Australian Design. The kettle was innovative in many ways; it was an early example of an all plastic electric kettle with a single-handed opening-spout. According to design historian Ian Wong ‘The use of an integral hinge for the spout opening mechanism utilised the unique live hinge property of polypropylene, now common but at the time a novel use and very efficient to manufacture.’ The kettle was available in Carpentaria Orange, Blaze Yellow and Lime Green with a contrasting base. Barry Hudson (1935-2008) studied Mechanical Engineering at the Melbourne Technical College (MTC). In the 1970s he was Research and Development Manager at General Electric, and he also worked with the industrial design practice Rosenfeldt, Gherardin and Associates. He established Barry Hudson Industrial Design in the 1980s and began a teaching career at the former MTC, now known as RMIT University. Ann Carew, 2020 1978 the Kettle won an Australian Design Award and the Prince Philip Prize for Australian Design.Orange and brown electric kettlekettle, industrial design, rmit university, domestic appliances -
Federation University Historical Collection
Booklet, Views of the Michigan College of Mines, c1906
... * Mechanical Engineering Building * Mining and Metallurgy Buildings... * Hubbell Hall * Mechanical Engineering Building * Mining ...Charcoal grey soft covered booklet with views of the Michigan College of Mines. * General View * Hubbell Hall * Mechanical Engineering Building * Mining and Metallurgy Buildings, with Stamp Mill in the Distance * Chemistry Building * College Club and Gymnasium Building * Architects Sketch of Library and Museum Building * Metallurgy Building * Mining Engineering Building * Assaying Course G1 * General Chemistry Course F1 * Inspecting Drill Operations * Mineralogy - COurses W1 and W2 * Railroad Surveying - Course Q1 * Field Geology * Reporting on Power PLants at Tamarack No. 5 Hoist * Sketching Ore Pockets * Pattern Shop * Physics Course * Underground in Champion Mine * QUalitative Chemistry * Field Surveying * Ore Dressing * HYdraulics Course * Machine Shop * Palaeontology and Historical Geology * Just Up from Lake Angeline Mine, Ishpeming Mineralogical Museum * Gymnasium, College Club Building * Lounging Room of College Club Buildingmichigan college of mines, school of mines, michigan, houghton, michigan, f.w. mcnair, united states of america, schools of mines, michigan school of mines -
Federation University Historical Collection
Booklet, Collingwood Technical School Prospectus, 1913, 1913
... in electrical wiring and electrical and mechanical engineering were... carpentry and pattern-making, plumbing, engineering, sheet iron work ...In the early years of the 20th century adequate technical education was lacking and became a focus in the Victorian Parliament. After much debate and discussion among politicians and educationalists, the 1910 Education Act No 2301 was passed, making possible the establishment of new technical schools to address the dearth of skilled trades people. In July 1912 Collingwood Technical School opened in the modified bluestone buildings at 35 Johnston St, originally built in 1853 as the Collingwood Town Hall and Court House. Within three weeks, there were 57 boys enrolled - studying preliminary carpentry and pattern-making, plumbing, engineering, sheet iron work and bricklaying. They attended two hours a night on three evenings a week. In 1913, the school opened its doors to juniors and took residence in new permanent buildings erected on the site. It was classified as a trades school by the State Education Department. Two years later courses in electrical wiring and electrical and mechanical engineering were introduced. In 1988 Preston College of TAFE and Collingwood College of TAFE merged to become Northern Metropolitan Institute of TAFE (NMIT). (http://victoriancollections.net.au/organisations/northern-melbourne-institute-of-tafe)Brown soft covered booklet of 40 pages. The contents include information relating to the Collingwood Technical School on 1913, including: Council members, constitution, standing orders, aim of the school, scholarships, advice to parents, Railway Fares, tram fares, General Rules to Students, Syllabus, English, Geography, Civics, Mathematics, Elementary Science, Woodwork, |Sheetmetalwork, evening course, carpentry, plumbing, joinery, and a list of students for 1912 Evening courses. collingwood technical school, collingwood, tafe, nmit, northern metropolitan institute of tafe -
Federation University Historical Collection
Booklet, Collingwood Technical School Prospectus, 1914, 1914
... in electrical wiring and electrical and mechanical engineering were... carpentry and pattern-making, plumbing, engineering, sheet iron work ...In the early years of the 20th century adequate technical education was lacking and became a focus in the Victorian Parliament. After much debate and discussion among politicians and educationalists, the 1910 Education Act No 2301 was passed, making possible the establishment of new technical schools to address the dearth of skilled trades people. In July 1912 Collingwood Technical School opened in the modified bluestone buildings at 35 Johnston St, originally built in 1853 as the Collingwood Town Hall and Court House. Within three weeks, there were 57 boys enrolled - studying preliminary carpentry and pattern-making, plumbing, engineering, sheet iron work and bricklaying. They attended two hours a night on three evenings a week. In 1913, the school opened its doors to juniors and took residence in new permanent buildings erected on the site. It was classified as a trades school by the State Education Department. Two years later courses in electrical wiring and electrical and mechanical engineering were introduced. In 1988 Preston College of TAFE and Collingwood College of TAFE merged to become Northern Metropolitan Institute of TAFE (NMIT). (http://victoriancollections.net.au/organisations/northern-melbourne-institute-of-tafe)Red soft covered book of 60 pages. Contents include: List of President, Council and staff, constitution, aim of the school, scholarships, evening classes, advice to parents, Railway fares, tram fares, free travel, general rules for students. syllabus of work, evening work. Images include carpentry class, Bricklaying, plastering and Turning & Fitting classcollingwood technical school, collingwood, tafe, nmit, northern metropolitan institute of tafe, carpentry, bricklaying, plastering, turning and fitting -
Churchill Island Heritage Farm
Functional object - Hand Auger, late 19th century
... of planes, mechanical, engineering and edge-tools'. They received..., mechanical, engineering and edge-tools'. They received 'prize medals ...Alexander Mathieson & Sons Ltd ('& Sons', after c. 1890), of the Saracen Tool Works, Glasgow, advertised as 'manufacturers of planes, mechanical, engineering and edge-tools'. They received 'prize medals' at the London, Melbourne and Edinburgh International Exhibitions of 1851, 1862, 1880 and 1886, in their 'quest for perfection in tools'. Mathieson's vast output included specialised craft implements for coopers, ship's carpenters, tinsmiths and wheelwrights. The firm originated when master plane-maker John Manners opened premises in Saracen Lane, Glasgow, in 1792. 4 Alexander Mathieson (c. 1797–1852) took over his business in 1821, which he gave as the foundation date of his firm. He was later succeeded by his son, Thomas A. Mathieson (1822–1899), a prominent Glasgow magistrate and preceptor of Hutcheson's Hospital charitable institution. In 1854, Mathiesons moved to East Campbell Street, and had opened branches in Edinburgh, Dundee and Liverpool by 1876. The third generation comprised Thomas O. and James H. Mathieson (born 1867), the latter being a Glasgow bailie (councillor), whose estate totalled an enormous £150,939 in 1926. Mathieson's hand- and small machine-tools (e.g. bandsaws and beading machines) were exported worldwide, especially their 'heavy duty auger bits used... for boring railway sleepers'. An auger is a drilling device, or drill bit, used for making holes in wood or in the groundMathieson Glasgow (crescent moon trade mark) 2 1/4 " borehand auger, auger, churchill island, farm, woodworking, woodwork, tools -
Churchill Island Heritage Farm
Tool - Extended Mathieson Auger, Mathieson
... of planes, mechanical, engineering and edge-tools'. They received..., mechanical, engineering and edge-tools'. They received 'prize medals ...Alexander Mathieson & Sons Ltd ('& Sons', after c. 1890), of the Saracen Tool Works, Glasgow, advertised as 'manufacturers of planes, mechanical, engineering and edge-tools'. They received 'prize medals' at the London, Melbourne and Edinburgh International Exhibitions of 1851, 1862, 1880 and 1886, in their 'quest for perfection in tools'. Mathieson's vast output included specialised craft implements for coopers, ship's carpenters, tinsmiths and wheelwrights. The firm originated when master plane-maker John Manners opened premises in Saracen Lane, Glasgow, in 1792. 4 Alexander Mathieson (c. 1797–1852) took over his business in 1821, which he gave as the foundation date of his firm. He was later succeeded by his son, Thomas A. Mathieson (1822–1899), a prominent Glasgow magistrate and preceptor of Hutcheson's Hospital charitable institution. In 1854, Mathiesons moved to East Campbell Street, and had opened branches in Edinburgh, Dundee and Liverpool by 1876. The third generation comprised Thomas O. and James H. Mathieson (born 1867), the latter being a Glasgow bailie (councillor), whose estate totalled an enormous £150,939 in 1926. Mathieson's hand- and small machine-tools (e.g. bandsaws and beading machines) were exported worldwide, especially their 'heavy duty auger bits used... for boring railway sleepers'. Damaged wooden handle (not original) bit welded on to metal rod, handle welded on to rod,. Surface rustMathieson + (illegible)mathieson, auger, tool, tools, farming, churchill island -
Churchill Island Heritage Farm
Tool - Block plane
... of planes, mechanical, engineering and edge-tools'. They received..., mechanical, engineering and edge-tools'. They received 'prize medals ...Alexander Mathieson & Sons Ltd ('& Sons', after c. 1890), of the Saracen Tool Works, Glasgow, advertised as 'manufacturers of planes, mechanical, engineering and edge-tools'. They received 'prize medals' at the London, Melbourne and Edinburgh International Exhibitions of 1851, 1862, 1880 and 1886, in their 'quest for perfection in tools'. Mathieson's vast output included specialised craft implements for coopers, ship's carpenters, tinsmiths and wheelwrights. The firm originated when master plane-maker John Manners opened premises in Saracen Lane, Glasgow, in 1792. 4 Alexander Mathieson (c. 1797–1852) took over his business in 1821, which he gave as the foundation date of his firm. He was later succeeded by his son, Thomas A. Mathieson (1822–1899), a prominent Glasgow magistrate and preceptor of Hutcheson's Hospital charitable institution. In 1854, Mathiesons moved to East Campbell Street, and had opened branches in Edinburgh, Dundee and Liverpool by 1876. The third generation comprised Thomas O. and James H. Mathieson (born 1867), the latter being a Glasgow bailie (councillor), whose estate totalled an enormous £150,939 in 1926. Mathieson's hand- and small machine-tools (e.g. bandsaws and beading machines) were exported worldwide, especially their 'heavy duty auger bits used... for boring railway sleepers'. Wooden smoothing plane with handle. Adjustable via wedge. Borer holes in handle.Ward blade. Plane made by Mathieson & Son Glasgow Best Guaranteed.plane, block plane, hand tools, carpenter's tools, mathieson, churchill island -
Warrnambool and District Historical Society Inc.
Medal - Medal VHAS, Villiers and Heytesbury Agricultural Association, Circa 1880
... an apprenticeship in Scotland in mechanical engineering. The Lennon plough... an apprenticeship in Scotland in mechanical engineering. The Lennon plough ...Historical information: this medallion has historical details on three fronts. Firstly the Villiers & Heytesbury Agricultural Association. This association began with the first meeting held on May 17th 1853 at Woodford. The minutes of that meeting read “That in the opinion of this meeting, the formation of an agricultural association would be of great benefit to persons in this district engaged in farming and pastoral pursuits. It initially embraced the following: ploughing, agricultural produce, machines and implements, and livestock of all descriptions. The first show was held at Warrnambool on April 10th 1855 on a green bounded by Fairy, Henna, and Koroit Streets. It was held there until 1875 when it moved to the present Showgrounds site in Koroit Street. At the 37th Annual show in 1890 Warrnambool held its first Grand National Show, being granted by the Chamber of Agriculture in turn, in Victoria. It became known as the Warrnambool Agricultural Society in 1911. Secondly the winner, Mr Hugh Lennon. He was one of the most successful innovators and manufacturers of agricultural implements in early Australia. Although born in Ireland, he served an apprenticeship in Scotland in mechanical engineering. The Lennon plough became known Australia wide. For many years he operated his business at the northern of Elizabeth Street in Melbourne. He was active in local affairs. He died in 1886 at the age of 52. Thirdly, Stokes and Martin. Thomas Stokes came to Australia in the 1850’s and established a successful business at Mincing Lane Melbourne, manufacturing buttons, medals and tokens. Martin joined the partnership in 1873, which lasted until a disastrous fire in 1893. The business was renamed Stokes & Sons Pty Ltd and it became a public company in 1962. It is currently situated at Ringwood in the business of spare parts for electrical equipment The Villiers and Heytesbury Agricultural Association was a significant event and organisation within the Western District over a large number of years. It was one of the earliest organisations in the district and is testament to its importance to the agricultural, social, and cultural life of the district. It is significant that this particular medallion was awarded to an innovator in the ploughing industry and that it was made by a company which is still in business 130 years later. Circular copper medallion cast with Villiers & Heytesbury Agricultural Assoctn around edge with winner and event details engraved in centre. The reverse is cast with horse, cow and sheep standing above wheat sheaf and farm implements. The edge of the medallion is plain.Villiers & Heytesbury Agricultl Assoctn around rim. 1st Prize awarded to Hugh Lennon for double furrow plough, Warrnambool Oct 19 1880. Stokes & Martin Melbourne in small lettering on the reverse.warrnambool, villiers & heytesbury, hugh lennon, stokes & martin, lennon plow, lennon plough -
Churchill Island Heritage Farm
Tool - 10" Spofford Brace, Mathieson
... , Glasgow, advertised as 'manufacturers of planes, mechanical..., Glasgow, advertised as 'manufacturers of planes, mechanical ...This brace would be used to drill into timber. A drill bit would be inserted into one end of the brace and then placed on the timber where the hole is to be drilled. The other end of the brace would be placed against the user’s abdomen, with one hand holding the brace firmly then the free hand would be used to turn the centre of the brace and drill the hole. This type of drilling method was used prior to the use of the electric drill. This brace appears to have been made by the firm of Alexander Mathieson & Sons from Glasgow, Scotland. Alexander Mathieson & Sons Ltd ('& Sons', after c. 1890), of the Saracen Tool Works, Glasgow, advertised as 'manufacturers of planes, mechanical, engineering and edge-tools'. They received 'prize medals' at the London, Melbourne and Edinburgh International Exhibitions of 1851, 1862, 1880 and 1886, in their 'quest for perfection in tools'. Mathieson's vast output included specialised craft implements for coopers, ship's carpenters, tinsmiths and wheelwrights. The firm originated when master plane-maker John Manners opened premises in Saracen Lane, Glasgow, in 1792. 4 Alexander Mathieson (c. 1797–1852) took over his business in 1821, which he gave as the foundation date of his firm. He was later succeeded by his son, Thomas A. Mathieson (1822–1899), a prominent Glasgow magistrate and preceptor of Hutcheson's Hospital charitable institution. In 1854, Mathiesons moved to East Campbell Street, and had opened branches in Edinburgh, Dundee and Liverpool by 1876. The third generation comprised Thomas O. and James H. Mathieson (born 1867), the latter being a Glasgow bailie (councillor), whose estate totalled an enormous £150,939 in 1926. Mathieson's hand- and small machine-tools (e.g. bandsaws and beading machines) were exported worldwide, especially their 'heavy duty auger bits used... for boring railway sleepers'. Iron carpenter's brace, metal handle, rotating knob, thumb screw, rustedATMIEBON (x) Mathiesonbrace, woodwork, carpenter's tools, spofford brace, churchill island -
Federation University Historical Collection
Photograph - Photograph - Colour, Clare Gervasoni, Historical Plaques at Federation University Australia Gippsland Campus
... diploma in Civil, Electrical, and Mechanical Engineering, Applied... diploma in Civil, Electrical, and Mechanical Engineering, Applied ...The following information was the preface of the 1985 GIAE handbook: The Gippsland institute of Advanced Education was established by an Order-in-Council in September, 1968, but, owes its origin to engineering diploma courses established in 1928 to service the developing electrical industry. The Council of the Institute includes members of the Gippsland community who are prominent in industry, commerce, education and the professions, the Director of the institute, the representative of the academic staff, of general staff, of students and of the Convocation of the Institute. In 1972 the Institute occupied the first of its permanent buildings on a large campus in rural surroundings near the township of Churchill, ten kilometres south of Morwell and one hundred and sixty kilometres east of Melbourne. Engineering laboratories are temporarily located in buildings on the site of the Yallourn College of TAFE at Newborough and they will be consolidated on the Churchill campus by the end on 1985. In 1974 new buildings were completed under a self-help program to house the School of Visual Arts. A building complex to provide the first stages of the permanent library and the Union, and accommodation for the School of Business and Social Sciences was completed in 1976. An Education building, an Applied Science building and student residential buildings for 108 student places were completed at the beginning on 1976. The Binishell, a multi-purpose facility was completed in 1980. On its establishment, the Institute assumed responsibility for the diploma courses which were previously offered by the Yallourn Technical College. These were diploma in Civil, Electrical, and Mechanical Engineering, Applied Chemistry, and Business, all of which were recognised by the appropriate professional bodies. The Gippsland Institute of Advanced Education is the only centre of Higher Education east of Melbourne and offers a range of vocational courses at associate diploma, diploma, degree, graduate degree and master levels to meet the educational needs of the Gippsland regions. The institute also has a very large commitment to a program on external studies. Federation University Australia was established on 1 January 2014. Formerly known as the University of Ballarat, its enabling legislation was the University of Ballarat Amendment (Federation University Australia) Act 2013. Although formally created as a University in 1994, the University of Ballarat had a lineage back to 1870 with the establishment of the School of Mines Ballarat, making it the third institution of higher learning to be established in Australia and the first to be established in regional Australia. On 1 January 1994, Ballarat University College became the University of Ballarat and in 1998 the University merged with three TAFE Institutes to become a dual sector institution with multiple campuses. On 1 January 2014, the University of Ballarat amalgamated with the Monash University Gippsland Campus to form Federation University Australia. The Gippsland Campus also had a long lineage dating back to 1928 with the establishment of the Yallourn Technical School which became a predecessor institution to the Gippsland College of Advanced Education formed in 1968. In 1990, it was renamed the Monash University College and in 1993 became the Gippsland Campus of Monash University.4 plaques placed on the wall of 'The Knuckle' at Federation University Gippsland Campus. .1) Brown and brass coloured plaque commemorating the establishment of Yallourn Technical School. .2) Brass plaque commemorating the opening of the Gippsland Institute of Advanced Education. .3) Brass plaque commemorating the affiliation between Gippsland Institute of Advanced Education and Monash University. .4) Plaque commemorating .1) 28 May 1928 In 1928 the Yallourn Technical College was established at the request of the State Electricity Commission of Victoria to provide technical and engineering support to staff. From this College the Gippsland Institute of Advanced Education was formed in 1968 leading to the establishment of Monash University College Gippsland in 1990 with full integration into Monash University in 1993. .2) The Gippsland Institute of Advanced Education was officially opened on the 20th November, 1976 by Senator The Honourable J.L. Carrick Minister of State for Education and The Honourable L.H.S. Thompson C.M.G., M.P. Deputy-Premier of Victoria and Minister of Education. .3) Monash University Gippsland Institute of Advanced Education At this campus on 24 February 1989 and in the presence of the Honourable John Dawkins, the Federal Minister for Employment, Education and Training, and representatives of the Gippsland community, affiliation documents were signed and exchanged. On 01 July 1990, the Gippsland Institute became the Monash University College Gippsland as a constituent of Monash University. Professor Tom Kennedy Professor Mal Logan Pro Vice-Chancellor Vice-Chancellor .4) Monash University Gippsland Campus On 25 August 1992 the Advisory Council of Monash University College Gippsland endorsed the integration of the University College into Monash University from 1 January 1993. Professor Tom Kennedy Mr Crofton Hatsell Pro Vice-Chancellor Chair, Advisory Council Professor Mal Logan, Vice-Chancellorfederaton university, yallourn technical college, state electricity commission of victoria, gippsland institute of advanced education, monash university college gippsland, monash university, central gippsland institute of tafe, lowanna college, lindsay thompson, j.l. carrick, tom kennedy, crofton hatsell, mal logan, john dawkins, gippsland institute, gippsland campus collection -
Federation University Historical Collection
Photograph - Photograph - Colour, Federation University Gippsland Campus, c1995, c1995
... , and Mechanical Engineering, Applied Chemistry, and Business, all of which..., and Mechanical Engineering, Applied Chemistry, and Business, all of which ...The following information was the preface of the 1985 GIAE handbook: The Gippsland institute of Advanced Education was established by an Order-in-Council in September, 1968, but, owes its origin to engineering diploma courses established in 1928 to service the developing electrical industry. The Council of the Institute includes members of the Gippsland community who are prominent in industry, commerce, education and the professions, the Director of the institute, the representative of the academic staff, of general staff, of students and of the Convocation of the Institute. In 1972 the Institute occupied the first of its permanent buildings on a large campus in rural surroundings near the township of Churchill, ten kilometres south of Morwell and one hundred and sixty kilometres east of Melbourne. Engineering laboratories are temporarily located in buildings on the site of the Yallourn College of TAFE at Newborough and they will be consolidated on the Churchill campus by the end on 1985. In 1974 new buildings were completed under a self-help program to house the School of Visual Arts. A building complex to provide the first stages of the permanent library and the Union, and accommodation for the School of Business and Social Sciences was completed in 1976. An Education building, an Applied Science building and student residential buildings for 108 student places were completed at the beginning on 1976. The Binishell, a multi-purpose facility was completed in 1980. On its establishment, the Institute assumed responsibility for the diploma courses which were previously offered by the Yallourn Technical College. These were diploma in Civil, Electrical, and Mechanical Engineering, Applied Chemistry, and Business, all of which were recognised by the appropriate professional bodies. The Gippsland Institute of Advanced Education is the only centre of Higher Education east of Melbourne and offers a range of vocational courses at associate diploma, diploma, degree, graduate degree and master levels to meet the educational needs of the Gippsland regions. The institute also has a very large commitment to a program on external studies. Federation University Australia was established on 1 January 2014. Formerly known as the University of Ballarat, its enabling legislation was the University of Ballarat Amendment (Federation University Australia) Act 2013. Although formally created as a University in 1994, the University of Ballarat had a lineage back to 1870 with the establishment of the School of Mines Ballarat, making it the third institution of higher learning to be established in Australia and the first to be established in regional Australia. On 1 January 1994, Ballarat University College became the University of Ballarat and in 1998 the University merged with three TAFE Institutes to become a dual sector institution with multiple campuses. On 1 January 2014, the University of Ballarat amalgamated with the Monash University Gippsland Campus to form Federation University Australia. The Gippsland Campus also had a long lineage dating back to 1928 with the establishment of the Yallourn Technical School which became a predecessor institution to the Gippsland College of Advanced Education formed in 1968. In 1990, it was renamed the Monash University College and in 1993 became the Gippsland Campus of Monash University. Large photograph adhered to foamcore showing an aerial view of the Federation University Gippsland Campus at Churchill, Victoria as it was c1995.churchill, gippsland campus, gippsland institute of advanced education, federation university, yallourn, morwell, binishell -
Federation University Historical Collection
Article - Article - Women, Ballarat School of Mines: Women of Note; Martha Pinkerton, Established Art Scholarship in perpetuity, (1864 - 1939)
... , applied chemistry, mining, electrical, mechanical or civil..., mining, electrical, mechanical or civil engineering-and secondly ...Martha Pinkerton and her brother Frank Pinkerton were longstanding supporters of the Ballarat School of Mines and its students. Following their deaths in the 1930s, the School became the recipient of two important bequests that were to lead to the establishment in perpetuity of the following student scholarships: firstly, the Frank Pinkerton scholarship valued at £30 per annum for three years and free tuition in architecture, metallurgy, applied chemistry, mining, electrical, mechanical or civil engineering-and secondly, the Martha K. Pinkerton art scholarship of the same value, 'for talented and deserving students from the City and District of Ballarat'. In the early 1930's Martha, who was a past student at the SMB Art and Technical School, began to give a succession of practical donations to the institution which commenced during the Depression years. Thereafter, for approximately a decade until her early death, she continued to donate £50 annually to assist with the payment of the fees of students at the Technical Art School who were experiencing financial difficulties.women of note, ballarat school of mines, martha pinkerton, bequests, frank pinkerton, scholarships, technical art school, art student, bequests in perpetuity, 1930s, depression years, payment of fees financial difficulties -
Federation University Historical Collection
Book, Gippsland Institute of Advanced Education Handbooks, 1970-1985
... , and Mechanical Engineering, Applied Chemistry, and Business, all of which..., and Mechanical Engineering, Applied Chemistry, and Business, all of which ....1) 1977 Gippsland Institute of Advanced Education Handbook with white cover .2) 1978 Gippsland Institute of Advanced Education Handbook with blue/black cover .3) 1979 Gippsland Institute of Advanced Education Handbook with orange cover .4) 1980 Gippsland Institute of Advanced Education Handbook with yellow/brown cover .5) 1981 Gippsland Institute of Advanced Education Handbook with grey/black cover .6 1984 Gippsland Institute of Advanced Education Handbook with blue cover .7) 1985 Gippsland Institute of Advanced Education Handbook with purple cover .8) 1989 Gippsland Institute of Advanced Education Handbook with white/purple/grey/red/blue cover .7) 1985 Gippsland Institute of Advanced Education Handbook with pale green cover. .9) 1974 Gippsland Institute of Advanced Education Handbook with orangeand white cover .10) 1975 Gippsland Institute of Advanced Education Handbook with green and white cover .11) 1976 Gippsland Institute of Advanced Education Handbook with white cover .12) 1986 Gippsland Institute of Advanced Education Handbook with mid-blue cover .13) 1987 Gippsland Institute of Advanced Education Handbook with red cover .14) 1988 Gippsland Institute of Advanced Education Handbook with red cover .15) 1973 Gippsland Institute of Advanced Education Handbook with brown cover .16) 1972 Gippsland Institute of Advanced Education Handbook with pale green cover .17) 1971 Gippsland Institute of Advanced Education Handbook with mid-blue cover non-fictiongippsland institute of advanced education, giae, gippsland, churchill, morwell, electricty, handbook, gippsland campus -
Federation University Historical Collection
Booklet, The School of Mines Ballaarat: Descriptive papers relating to the institution by the special reporter of "The Ballarat Star", 1875 (exact)
... ), Mechanical Engineering John Lewis (New North Company Clunes... R.M. Serjeant (Band and Albion Consols), Mechanical ...The booklet comprises of a series of papers published in the Ballarat Star, with some revisions. The Administrative Council hoped the publication would increase interest in Technical Education, especially the Art of Mining. He would also hope the public would recognise the Ballarat School of Mines as an institution adapted to supply technical education. The Ballarat School of Mines Council listed at the front of the book includes: Redmond Barry (President and Trustee), Judge Rogers (Vice-President), Somerville Livingstone Learmonth (Trustee), Rivett Henry Bland (Trustee), Charles Gavan Duffy, John A. MacPherson (MLA), William McLellan (MLA), Duncan Gillies (MLA), F. McCoy (University of Melbourne), John I. Bleasdale, W.H. Barnard, James M. Bickett, Henry Richards Caselli, P. Chauncy, J.M. Davey, Joseph Flude, R.F. Hudson, Robert Lewis, James Oddie, Robert M. Serjeant, J. F. Usher, John Walker, J. Williamson, Mayor of the City of Ballaarat, chairman (for the time being) of each of the seven Mining Boards of Victoria. The President of Examiners was Judge Rogers, and the Honorary Auditor was Richard Ford.Stapled, brown soft covered booklet of 48 pages. Section I outlines the establishment of the Ballarat School of Mines, the buildings and land used by the school, describes in detail the former Ballarat Circuit Court and describes the lecture rooms. Section II describes the Ballarat School of Mines Museum, including a description of exhibits. Section III describes the lecture hall, and the apartments on either side of the hall, including the office of the registrar W.H. Barnard, mathematical classroom, chemical laboratory, and metallurgical laboratory. Section IV outlines the subjects offered by the Ballarat School of Mines, including Mathematics taught by John Victor of Grenville College, who had been educated at Trinity College Dublin. Mining and Land Surveying was taught by C.W. Thomas. Mr Croll taught mechanical drawing, followed by Jonathan Robinson of the Union Foundry, and finally S. Keast. It then lists some text books used in the school. Section V mentions the School Council, lack of funds, future directions, mining laboratory. Vi- Describes the land and out buildings, and the proposed building for metal and wood turning, brass foundry, blacksmith, working engine, etc. This section describes some large donations to the school - 50 pounds from the Misses Meglin of Melbourne, 10 pounds 10 shillings to the 'Pyrites fund' by the Walhalla and Long Tunnel Companies in Gippsland. Section VII covers the teaching of chemistry by Joseph Flude. Section VIII outlines the metallurgy classes and the process of assaying. Section IX covers telegraphy taught by Mr Bechervaise Section X describes the examination process at the Ballarat School of Mines. Examiners in mathematics were G.J. Russell (Buninyong) and John Lynch (Smythesdale), mining and land surveying John Lynch and P.C. Fitzpatrick (Ballarat), Principles and Practice of Mining R.M. Serjeant (Band and Albion Consols), Mechanical Engineering John Lewis (New North Company Clunes, Mineralogy and Geology G.H. F. Ulrich, Assayign and Chemistry J. Cosmo Newberry, and Telegraphy R.L.J. Ellery (government astronomer) and Sam W. Macgowan. Underground managers and captains in quart mining was examined by Henry Rosales (Walhalla Company), and alluvial mines by Messrs Bockett, Kent, Martin and Mitchell. Engineers and Engine driving was examined by W.H. Keast,Peter Matthews, Jonathan Robinson and J.M. Troup. Section XI - Covers Annual reports of the school, and honorary correspondents of the school including: John Day (Geelong); R. Evan Day (London); W.W. Evans, M.J.C.E. of New York; J.Y. Fishburne, M.B. of Ararat; Felice Giordano, Inspector of Mines, Italy; Julius Von Haast, Ph. D.F.R.S., Government Geologist of Canterbury; James Hector, M.D., F.R.S., Government Geologist of Wellington, New Zealand, W.F. Hopkins (Grant); Charles A. La Trobe, C.E. (Engineer-in-Chief International Railway Plant, London); Archibald Liversidge, F.G.S. (Professor of Mineralogy and Reader in geology at Sydney University; J.J. Macgregor, M.D. (Creswick); J.T. McKenna (1st class of SMB underground management - Northern Territory); Henry Rosales, M.E. and M. (Walhalla); Harrie Wood (SMB founder and Under-secretary for Mines, Sydney); John Walthew (Stockport, England) .2) Signed 'E.J. Tippett', former President of the Ballarat School of Mines Council melbourne, mla, ballarat school of mines, redmond barry, j f usher, james bickett, w f hopkins, rivett henry bland, s m b, judge rogers, somerville learmonth, charles gavan duffy, gavan duffy, john macpherson, william mclellan, duncan gillies, f mccoy, university, john bleasdale, henry richards caselli, henry caselli, p chauncy, j m davey, joseph flude, r f hudson, robert lewis, james oddie, robert m serjeant, john walker, j williamson, richard ford, ballarat court house, assay, john victor, grenville college, trinity college dublin, c w thomas, jonathan robinson, union foundry, s keast, blessdale, john day, r evan day, w w evans, j y fishburne, felice giordano, julius von haast, james hector, charles a la, trobe, archibald liversidge, j j macgregor, j t mckenna, henry rosales, harrie wood, john walthew, fees, frederick mccoy, w.h. barnard -
Puffing Billy Railway
V. R. Krupp 1888. IV. Rail, 1888
... as mechanical, structural, electrical and marine engineering... as mechanical, structural, electrical and marine engineering ...60lbs rail that was used throughout the Victorian rail network. In 1887 Gibbs, Bright and Co. had a contract with Victorian Railways for railway and canal construction and supply of Krupp Rails. Gibbs, Bright and Co were merchant bankers and shipping agents and merchants who where also Directors of the GWR ( Great Western Railway ) and the Ship The "Great Britain" in England Gibbs, Bright and Company had principally been involved in shipping and trading, mainly in the West Indies, but following the discovery of gold in Victoria they established an office in Melbourne and soon became one of the leading shipping agents and merchants in the Colony. They expanded into passenger shipping and soon established offices in Brisbane, Sydney, Newcastle, Adelaide and Perth as well as launching passenger services between England, Mauritius and New Zealand. Gibbs, Bright also held a number of financial agencies from British mortgage, finance and investment companies as well as representing several British insurance companies in Australia. In addition they conducted a growing import business as well as an export business that included livestock, dairy produce, wool and flour. Also the company played a substantial part in the development of Australia's mineral resources, starting with lead in 1895, and later venturing into tin, gold, copper, cement and super phosphates. In Australia, after WWI, many of the larger companies were managing their own import and export so Gibbs, Bright and Company tended to focus its Agency business on smaller companies while expanding their interest into other markets such as timber, wire netting, zinc, stevedoring, road transport, marine salvage, gold mining as well as mechanical, structural, electrical and marine engineering. The Company's shipping interests continued to grow as well and still formed a major part of its business. In 1948 the parent company in England took the major step from tradition when they changed the business from a partnership into a private limited company. The name was the same, Antony Gibbs and Sons Limited, and in practice the effect of the change was very little. Some of the firm's branches and departments had already become limited companies and the formation of a parent company simplified the structure. The Australian operation was in time changed to Gibbs Bright & Co Pty Ltd in 1963. In 1848 Alfred Krupp becomes the sole proprietor of the company which from 1850 experiences its first major growth surge. In 1849 his equally talented brother Hermann (1814 - 1879) takes over the hardware factory Metallwarenfabrik in Berndorf near Vienna, which Krupp had established together with Alexander Schöller six years earlier. The factory manufactures cutlery in a rolling process developed by the brothers. Krupp's main products are machinery and machine components made of high-quality cast steel, especially equipment for the railroads, most notably the seamless wheel tire, and from 1859 to an increased extent artillery. To secure raw materials and feedstock for his production, Krupp acquires ore deposits, coal mines and iron works. On Alfred Krupp's death in 1887 the company employs 20,200 people. His great business success is based on the quality of the products, systematic measures to secure sales, the use of new cost-effective steel-making techniques, good organization within the company, and the cultivation of a loyal and highly qualified workforce among other things through an extensive company welfare system. From 1878 August Thyssen starts to get involved in processing the products manufactured by Thyssen & Co., including the fabrication of pipes for gas lines. In 1882 he starts rolling sheet at Styrum, for which two years later he sets up a galvanizing shop. The foundation stone for Maschinenfabrik Thyssen & Co. is laid in 1883 with the purchase of a neighboring mechanical engineering company. In 1891 August Thyssen takes the first step toward creating a vertical company at the Gewerkschaft Deutscher Kaiser coal mine in [Duisburg-]Hamborn, which he expands to an integrated iron and steelmaking plant on the River Rhine. Just before the First World War he starts to expand his group internationally (Netherlands, UK, France, Russia, Mediterranean region, Argentina). info from The company thyssenkrupp - History https://www.thyssenkrupp.com/en/company/history/the-founding-families/alfred-krupp.htmlHistoric - Victorian Railways - Track Rail - made by Krupp in 1888Section of VR Krupp 1888 Rail mounted on a piece of varnished wood. Rail made of ironpuffing billy, krupp, rail, victorian railways -
Federation University Historical Collection
Medal, Ballarat School of Mines Hillman Award (medal), c1992
... of Mechanical and Civil Engineering in 1948 and Head of the Electrical... and Civil Engineering in 1944, Lecturer-in-Charge of Mechanical ...Lindsay F.J. Hillman was born in Ballarat in 1910, and attended the Ballarat Junior Technical School. He became a cadet in Electrical Engineering Laboratory at the Ballarat School of Mines where he gained eventually gained a student Teachership for diploma studies at the School. Hillman was particularly active and excelled in a wide range of sporting interests and in student activities. In 1928 and 1928 he was awarded the Ballarat School of Mines Honour blazer by the Old Boys' association for all round athletic ability, leadership and scholarship. After spending two years with the Melbourne City Council Electric Supply Department gaining industrial experience Hillman was awarded his Diploma of electrical engineering in 1931, returning to the School in 1932 to teach apprentices and senior students. Hillman was appointed lecturer in Engineering Design and Graphics in 1937, lecturer in Engineering Design and Civil Engineering in 1944, Lecturer-in-Charge of Mechanical and Civil Engineering in 1948 and Head of the Electrical Engineering Department in 1949, a position he held until his retirement in 1973. In 1975 Lindsay Hillman was appointed to the Council of the Ballarat School of Mines and played an active role in school affairs.As Vice-President of Council from 1981 until his death in 1991 Hillman took a leading part in the implementation of many of the major building projects on the Lydiard Street Campus. The L.F.J. Hillman Award was established by the Ballarat School of Mines Council in conjunction with and through the generosity of the Hillman family in honour of the late Lindsay Frederick John Hillman. The bronze medal was presented annually to an enrolled student in an accredited course in the field of electrical/electronics studies at the Ballarat School of Mines. specific Criteria for the Award consisted of a balance of academic performance, leadership qualities, commitment to further study and involvement in sporting and/or community groups. Bronze medal designed depicting the portrait of Lindsay Hillman. The medal has a copper finish, and is presented in a blue hinged box. The first Hillman Award was presented in 1992. The recipients are: 1992 - Brett A. Hovey 1993 - Nil 1994 - Brent L. Ferguson 1995 - Kirsty McKenzie 1996 - Peter J. White 2000 - Roger Bush 2001 - Thomas Edward George 2002 - Mark William Holden 2003 - David James Hopwood 2004 - Leighton Dunn 2005 - Donald Pirouet 2006 - Mark Irvin 2007 - Ricky Wilson 2008 - Luther Dean 2009 - Daniel Thatcher 2010 - Craig Coulter 2011 - Sarah Draper 2012 - Rhys Hendrickson 2013 - Jayden Hooper "Lindsay Hillman Memorial Medal" Verso: "The School of Mines and Industries Ballarat, Est. 1870 Presented to "ballarat school of mines, hillman, lindsay hillman, medal, numismatics, honour blazer, electrical engineering, electronics, hillman medal, hillman award -
Federation University Historical Collection
Photographs - Colour, Hillman Award Agreement and Presentation, 1991, 1991
... and Civil Engineering in 1944, Lecturer-in-Charge of Mechanical... and Civil Engineering in 1944, Lecturer-in-Charge of Mechanical ...Lindsay F.J. Hillman was born in Ballarat, and attended the Ballarat Junior Technical School. He became a cadet in Electrical Engineering Laboratory at the Ballarat School of Mines where he gained eventually gained a student Teachership for diploma studies at the School. Hillman was particularly active and excelled in a wide range of sporting interests and in student activities. In 1928 and 1928 he was awarded the Ballarat School of Mines Honour blazer by the Old Boys' association for all round athletic ability, leadership and scholarship. After spending two years with the Melbourne City Council Electric Supply Department gaining industrial experience Hillman was awarded his Diploma of electrical engineering in 1931, returning to the School in 1932 to teach apprentices and senior students. Hillman was appointed lecturer in Engineering Design and Graphics in 1937, lecturer in Engineering Design and Civil Engineering in 1944, Lecturer-in-Charge of Mechanical and Civil Engineering in 1948 and Head of the Electrical Engineering Department in 1949, a position he held until his retirement in 1973. In 1975 Lindsay Hillman was appointed to the Council of the Ballarat School of Mines and played an active role in school affairs.As Vice-President of Council from 1981 until his death in 1991 Hillman took a leading part in the implementation of many of the major building projects on the Lydiard Street Campus. The L.F.J. Hillman Award was established by the Ballarat School of Mines Council in conjunction with and through the generosity of the Hillman family in honour of the late Lindsay Frederick John Hillman. The bronze medal was presented annually to an enrolled student in an accredited course in the field of electrical/electronics studies at the Ballarat School of Mines. specific Criteria for the Award consisted of a balance of academic performance, leadership qualities, commitment to further study and involvement in sporting and/or community groups. The first Hillman Award was presented in 1991. The recipients are: 1991: Paul Donald 1992 - Brett A. Hovey 1994 - Brent L. Ferguson 1995 - Kirsty McKenzie 1996 - Peter J. WhiteEighteen colour photographs of the signing of the Hillman award agreement and the first presentation of the award in 1991 to Paul Donald . .2) Gregor Hillman, Judith Tinney and Caroline Bethune .4) Judith Tinney or Caroline Bethune and Bill Gribble sign the agreement .8) Gregor Hillman, Judith Tinney and Caroline Bethune sign the agreement, along with President of the Ballarat School of Mines, Bill Gribble. .10) Paul Donald with his L.F.J. Hillman Award, 1991 .11) Ballarat School of Mines Principal, Peter Shiells, speaks at the lectern watched on by members of the Hillman family.ballarat school of mines, hillman, lindsay hillman, medal, numismatics, electrical engineering, electronics, gregor hillman. judith tinney, caroline bethune, tinney, bethune, hovey, ferguson, mckenzie, white, paul donald, donald -
Federation University Historical Collection
Programme, Programme for the Official Opening of the Mt Helen Campus, 10/1970
... . It contains the departments of Mechanical, Civil and Mining.... It contains the departments of Mechanical, Civil and Mining ...The first building at the Mt Helen Campus was opened in October 1970. Students first starting using the campus in the same year. The programme includes the following historical information: "On 26th October, 1870, Sir Redmond Barry officially opened the first venture into formal technical education in Australia - the Ballarat School of Mines. Over the preceding year a small group of Ballarat citizens interested in mining had conceived and brought into being the idea of creating such a school. They leased a derelict Court House next to the Ballarat Gaol in Lydiard St., at a nominal rental for15 years, and started classes with 4 students and an honorary lecturer. The School developed its courses beyond the initially intended range of studies related to mining, increased in enrolments, took over neighbouring properties and buildings and developed three levels of education - tertiary, trade and secondary. From the latter part of the 19th Century, even though remaining under the control of its own autonomous Council, it developed close links with the State Education Department. From the earliest times the School achieved widespread recognition and a particularly high reputation, and its graduates spread across Australia and the world. For several years it was affiliated with Melbourne University. In the last decade its scope has been further broadened by the introduction of new tertiary courses. During 1965 the State Government created the Victoria Institute of Colleges - a non-teaching body empowered to award degrees and directed towards the task of co-ordinating and developing tertiary education in Victorian in institutions other than universities. the tertiary division of the School became affiliated with the V.I.C. at the end of that same year. Subsequently the Council of the School decided that, whilst retaining for the whole establishment the time honoured title - The School of Mines and Industries, Ballarat - it should more distinctly sub-title the three divisions. the tertiary division then became known as the Ballarat Institute of Advanced Education. On receipt of substantial Commonwealth-State Grants, made to it as a college of advanced education, the Council was enabled at the start of 1967, to purchase for the Institute the 20 acre campus at Mt Helen. A master plan has been produced to develop this beautiful and spacious site as a tertiary institution enrolling, in due course, some 3000 full time students. the first sod was turned, to initiate this development, by the then Governor General of Australia, The Right Honourable Lord Casey, on 19th October, 1967. The first building group, now completed and occupied, has involved an expenditure approaching $1,000,000. It contains the departments of Mechanical, Civil and Mining Engineering, Metallurgy and Geology. it also contains the Computer Centre, a temporary Library and temporary student amenities. Over the next two years a further four buildings, costing about $2,500,000, will be erected, and a further major portion of the Institute will move to Mt Helen. these buildings, in addition to one for direct teaching work, will include a Library, a Union and the first stage of a Hall of Residence."White, folded, paper programme printed on the occasion of the official opening of the Ballarat Institute of Advanced Education (BIAE) Mount Helen Campus on the occasion of the centenary of the Ballarat School of Minesuniversity of ballarat, ballarat school of mines, biae, mount helen, mt helen campus, mb john, jack barker, e.j. barker, rolly parfenovics, parfenovics, nigel bown, campus. victorian institute of colleges, m.b. john -
Federation University Historical Collection
Booklet, The Ballarat School of Mines and Industries 1870-1920 Jubilee Booklet, 1920 (estimated)
... Engineering, Mechanical Engineering, Applied Chemistry, and Pharmacy... Engineering, Mechanical Engineering, Applied Chemistry, and Pharmacy ...The first school of Mines in Australia was established at Ballarat in 1870. At the time of its jubilee (1930) the following people were members of the School Council: W.H. Middleton (President), W.T. Humphreys (VP), J.S. Vickery (VP), F. Barrow, Col. W.K. Bolton, William Baragwanath, A.E. Cutter, J.N. Dunn, G. Fitches, W.H. Fleay, F. Herman. W.D. Hill, T. Hurley, K. Kean. J. Kelly, L. Lederman, Mayor of Ballarat, Mayour of Ballarat East, D. Maxwell, M. Martin, R. Maddern, D. Ronaldson, F. Saunders, R. Stephenson, A.O. Stubbs, R.E. Tunbridge. The School Staff in 1920 comprised: Herbert H. Smith, Walter Rowbotham, Reginald L. Cutter, M.C. Young, Hilda Wardle, M. Wiliamson, P.S. Richards, L.H. Archibald, J. Woods, Ken Moss, W. Kenneth, Mrs McIlvena. B. Robinson, S. Rowe, E. Hope-Jones, Miss Abrams, L.St.G.P. Austin, Alfred Mica Smith, J.R. Pound, Herbert R. Murphy, N.H. Junner, Maurice Copland, L.H. Archibald, E.J.A. McConnon, Newton King, D.m. Hull, T.R. Gordon, John M. Sutherland, T.K. Jebb, Dick Richards, C. Tonkin, A.W. Steane, J. Paterson, H.W. Malin, R.V. Maddison, S.M. Mayo, F.A. King, W.H. Steane, T.R. Gordon, T.A. Williams, H. Waldron, G. Black, E.J. McConnon, R.V. Duncan. R. Cutter, E.G. Vawdrey, Hilda WardleWhite stapled booklet - landscape format - 20pp + soft covers with blue writing. Includes an historical sketch of the Ballarat School of Mines. Contains images of the school from around 1920. The history outlined in the booklet follows: 'Ballarat has helped to influence the life and destinies of Australia in many ways, the recital of which would perhaps prove tedious to the citizens of less favoured localities! However, it can be said, without much fear of contradiction, that only less known thought Australia than its fame as a gold field is the reputation won for it by its school of Mines, ... Ballarat was still quite a new place when the School was founded, but a very propserous and popular place all the same, with a go-ahead lot of citizens brim full of the spirit of enterprise which seemsto animate mining populations generally. Money was plentiful, and they launched out into ventures, which later, were to develop and take the place of the gold mines, while what is more to the point, they understood the value of education. the old digging days were passing away. So far as Ballarat itself was concerned the day of the cradle and tin dish had already passed into an antiquity "as dead and distant as the age of the Tubal Caon," said dir redmond Barry on declaring the School open. Mining had become a serious business, and the mining engineer, the metallurgist, and the geologist had become a power in the land. In these circumstances the suggestions to found a School of Mines met with ready acceptance. The late Mr James M. Bickett had the honor of bringing forward the proposition at a meeting of the Ballarat Mining Board in October, 1869. it was agreed to, and the Government, having been approached for assistance, granted a lease of the old Supreme Court buildings at a nominal reantal. A modest sum, including 100 pounds from the Borough Council of Ballarat West, was subscribed by a number of sympathisers, and on the 26th October, 1870, the inaugural address was delivered by Sir Redmond Barry, the first President of the School. Classes were commenced on the 23rd January, 1871. The students at first were mostly adults. They were chiefly men emloyed at the mines, who had the wisdom and energy to devote their spare time to study, and, though their attendance was somewhat irregular, they made very good progress. Old prints which have been preserved show them at work at furnaces, big bearded men of the old-fashioned type of miner. It is interesting to note that among those who gave evidence and encouragement was Sir Roderick Murchison, who many years before had advised Cornish miners to emigrate to Australia to search for gold, and who in 1848 was in possession of gold ore sent from this country. Sir Roderick sent a parcel of books for the library, and gave useful advice as to the curriculum which should be adopted. The Museum, which now contains a most valuable collection of minerals, was one of the first things attended to, and the reports presented to the Council from time to time speak of additions being made from all parts of the world. New equipment was constantly being added to the School, a good deal of assay work was done, and some specimens were sent from the East Indies for examination as far back as 1873. By this time there was a difficulty in providing accomodation for the students who wished to enrol, and the number of instructors had grown from two to four. In 1882 the first building was being erected on what was then part of the gaol reserve. A little more than ten years afterwards a buildnig formerly serving as a Methodist Church was absorbed, while later on, the demand for accomodation increasing, the attack upon the gaol was renewed. The School continued to grow in reputation and size, and became the science centre of the district, and in 1889 a learge new building was opened by Sir Alexander Peacock. Students came from over seas as well as from all the States of Australia, and after going through their courses they took with them the name and fame of the old School to all parts of the globe. School of Mines boys have played a great part in developing the mining fields of Western Australia, South Australia, and africa, while old students who have made a name in their profession are constantly dropping in to see how the old place is getting along. It was not to be expected, however, that the Ballarat School would be left without rivals, its very success inspiring competition. Mining Schools were started in other parts of Australia, and, at the same time, Victoria ceased to hold first place as a mining state. On the other hand there was a great advance in manufacturing, and the demand for technicaly trained men became a great and as insistent as ever it had been for trained mining men. The Council was quick to adapt the school to the new conditions, and the result is seen in the institution, which is one of Ballarat's proudest possession. Instruction is given in all branches of technical work, and the classes are filled with students who are building up for Ballarat a reputation as an industrial centre, which promises to equal that which it formerly held as a mining town. Owing to its bracing climate, its abundant opportunities for recreations, and its accessibilty, Ballarat as a city is an ideal place for educational purposed, and is yearly becoming more and more appreciated throughout the State. The chairman of one of Ballarat's biggests industries claims that the workman can do twice the day's work here that he can do in Melbourne. he was a little enthusiastic over it, perhaps, but it is a well-known fact that the healthy and invigourating Ballarat climate is conducive to both physical and mental activity, and the records of the School provide ample proof of it. One of the most interesting and successful branches of the School of Mines and Industries - if the name be enlarged with the enlargement of its scope - is the Technical Art School. "The City of Statues" has from its earliest days been a stronghold of art. Art schools have flourised here, and in 1905 the Education Department came to the conclusion that the best thing to do with them was to place them under the management of the School of Mines Council. A magnificent new Technical Art School was built at a cost of some 12,000 pounds on the site of the old Supreme Court building, and was formally opened on the 23rd July, 1915. The results have not only been justified but surpassed all anticipations. The most comprehensive list of subjects is taught, and this list is constantly added to. Students have flocked to the art School, which may be said to occupy a unique position in Australia, and its record of success is really astonishing. Its students supply art teachers for the newer schools that are being built, and many occupy leading positinos in important business houses. So well is its reputation known that orders are constantly being received, not only from Victoria, but from other States, for honor boards and challenge shields to be designed and made. The most recent addition to the School of Mines and Industries is the Junior Technical School, for which a new building is now being erected on a portion of the gaol site, transferred to the School of Mines Counci by the Government. At the present moment temporary quarters are being occupied. Some students after passing through the Junior School go straight to employment, continuing perhaps to attend the evening trade classes, while others move on to the senior School. In a review of the work of the School of Mines mention must be made of a series of industrial research carried out under supervision of the Principal. One in particular, regarding the suitability of the local ores for the manufacture of pigments attracted much attention, while the experiemtns on the manufacture of white potery from Victorian clayes were considered of sufficient importance by the Federal Advisory Council of Science and Industry to warrant the appointment of a special investigator. The results of these have been most encouraging, and may have far-reaching consequences. The vocational training of returned soldiers also should not be overlooked. The work was taken in hand from the first, before the Repatriation Department gave assistance, and now with the help of the department of the School has become one of the largest vocational training centres in Victoria outside of Melbourne. The soldiers, trained in a variety of occupations, have made remarkable progress, and already considerable numbers have found employment in local workshops and factories. To sum up, the School is divided into the following departments, each well staffed and equipped: - The School of Mines, science, and Engineering; the Techncial Art School, the Boys' Junior Technical School, the Girl's Preparatory Technical Classes, Trade Classes, and the Commercial School. The school of Mines, science and Engineering, comprises the following branches: - Mining, Metallurgy, Geology, Electrical Engineering, Civil Engineering, Mechanical Engineering, Applied Chemistry, and Pharmacy. Battery treatments, Cyanide Testing, Smelting, Assays, and Clay Testing from a regular part of the School's work. Students gaining qualifications obtain concession in their courses at the university, should they proceed there to continue their studies. The technical Art school curriculum includes training in all branches of pictorial and applied art, an Architectural Diploma Course, a Draughtman's Course, technical Art teachers' Course, Photography,Ticket Writing, Art Metal Work, Woodcarving, Needlework, and Leather work. The Trade Classes give instruction in Telephone Mechanics, telegraphy, Carpentry, Cabinet Making, Plumbing, Blacksmithing, Fitting, Electric Wiring, and Printing. Numerous Scholarships are offered every year, and altogether students will find few places to equal the Ballarat School of Mines and Industries as a training place for their life's work. One of the first in the continent to be established, its Jubilee finds it still in the front rank, keeping pace with the times, and offering to the youths of this country the means of taking advantage of Australia's teeming opportunities. william, battery, smith, herbert, drawing from the antique, ballarat school of mines botanical gardens, ballarat school of mines, redmond barry, alfred mica smith, james bickett, museum, dick richards, ballarat junior technical school, s m b, ballarat school of mines and industries, ballarat technical art school, model mine, james m bickett, j m bickett, roderick murchison, vocational training rooms, wesley church, methodist church, alexander peacock, lathes, repatriation, repatriatin department, war service, school council, baragwanath, gold mining, mining laboratory, plaster cast, r.w. richards, anniversary, jubilee -
Federation University Historical Collection
Booklet, The Ballarat School of Mines and Industries 1870-1920 Jubilee Booklet, 1920 (estimated)
... Engineering, Mechanical Engineering, Applied Chemistry, and Pharmacy... Engineering, Mechanical Engineering, Applied Chemistry, and Pharmacy ...The first school of Mines in Australia was established at Ballarat in 1870. At the time of its jubilee (1930) the following people were members of the School Council: W.H. Middleton (President), W.T. Humphreys (VP), J.S. Vickery (VP), F. Barrow, Col. W.K. Bolton, William Baragwanath, A.E. Cutter, J.N. Dunn, G. Fitches, W.H. Fleay, F. Herman. W.D. Hill, T. Hurley, K. Kean. J. Kelly, L. Lederman, Mayor of Ballarat, Mayour of Ballarat East, D. Maxwell, M. Martin, R. Maddern, D. Ronaldson, F. Saunders, R. Stephenson, A.O. Stubbs, R.E. Tunbridge. The School Staff in 1920 comprised: Herbert H. Smith, Walter Rowbotham, Reginald L. Cutter, M.C. Young, Hilda Wardle, M. Wiliamson, P.S. Richards, L.H. Archibald, J. Woods, Ken Moss, W. Kenneth, Mrs McIlvena. B. Robinson, S. Rowe, E. Hope-Jones, Miss Abrams, L.St.G.P. Austin, Alfred Mica Smith, J.R. Pound, Herbert R. Murphy, N.H. Junner, Maurice Copland, L.H. Archibald, E.J.A. McConnon, Newton King, D.m. Hull, T.R. Gordon, John M. Sutherland, T.K. Jebb, Dick Richards, C. Tonkin, A.W. Steane, J. Paterson, H.W. Malin, R.V. Maddison, S.M. Mayo, F.A. King, W.H. Steane, T.R. Gordon, T.A. Williams, H. Waldron, G. Black, E.J. McConnon, R.V. Duncan. R. Cutter, E.G. Vawdrey, Hilda WardleWhite stapled booklet - landscape format - 20pp + soft covers with blue writing. Includes an historical sketch of the Ballarat School of Mines. Contains images of the school from around 1920. The history outlined in the booklet follows: 'Ballarat has helped to influence the life and destinies of Australia in many ways, the recital of which would perhaps prove tedious to the citizens of less favoured localities! However, it can be said, without much fear of contradiction, that only less known thought Australia than its fame as a gold field is the reputation won for it by its school of Mines, ... Ballarat was still quite a new place when the School was founded, but a very propserous and popular place all the same, with a go-ahead lot of citizens brim full of the spirit of enterprise which seemsto animate mining populations generally. Money was plentiful, and they launched out into ventures, which later, were to develop and take the place of the gold mines, while what is more to the point, they understood the value of education. the old digging days were passing away. So far as Ballarat itself was concerned the day of the cradle and tin dish had already passed into an antiquity "as dead and distant as the age of the Tubal Caon," said dir redmond Barry on declaring the School open. Mining had become a serious business, and the mining engineer, the metallurgist, and the geologist had become a power in the land. In these circumstances the suggestions to found a School of Mines met with ready acceptance. The late Mr James M. Bickett had the honor of bringing forward the proposition at a meeting of the Ballarat Mining Board in October, 1869. it was agreed to, and the Government, having been approached for assistance, granted a lease of the old Supreme Court buildings at a nominal reantal. A modest sum, including 100 pounds from the Borough Council of Ballarat West, was subscribed by a number of sympathisers, and on the 26th October, 1870, the inaugural address was delivered by Sir Redmond Barry, the first President of the School. Classes were commenced on the 23rd January, 1871. The students at first were mostly adults. They were chiefly men emloyed at the mines, who had the wisdom and energy to devote their spare time to study, and, though their attendance was somewhat irregular, they made very good progress. Old prints which have been preserved show them at work at furnaces, big bearded men of the old-fashioned type of miner. It is interesting to note that among those who gave evidence and encouragement was Sir Roderick Murchison, who many years before had advised Cornish miners to emigrate to Australia to search for gold, and who in 1848 was in possession of gold ore sent from this country. Sir Roderick sent a parcel of books for the library, and gave useful advice as to the curriculum which should be adopted. The Museum, which now contains a most valuable collection of minerals, was one of the first things attended to, and the reports presented to the Council from time to time speak of additions being made from all parts of the world. New equipment was constantly being added to the School, a good deal of assay work was done, and some specimens were sent from the East Indies for examination as far back as 1873. By this time there was a difficulty in providing accomodation for the students who wished to enrol, and the number of instructors had grown from two to four. In 1882 the first building was being erected on what was then part of the gaol reserve. A little more than ten years afterwards a buildnig formerly serving as a Methodist Church was absorbed, while later on, the demand for accomodation increasing, the attack upon the gaol was renewed. The School continued to grow in reputation and size, and became the science centre of the district, and in 1889 a learge new building was opened by Sir Alexander Peacock. Students came from over seas as well as from all the States of Australia, and after going through their courses they took with them the name and fame of the old School to all parts of the globe. School of Mines boys have played a great part in developing the mining fields of Western Australia, South Australia, and africa, while old students who have made a name in their profession are constantly dropping in to see how the old place is getting along. It was not to be expected, however, that the Ballarat School would be left without rivals, its very success inspiring competition. Mining Schools were started in other parts of Australia, and, at the same time, Victoria ceased to hold first place as a mining state. On the other hand there was a great advance in manufacturing, and the demand for technicaly trained men became a great and as insistent as ever it had been for trained mining men. The Council was quick to adapt the school to the new conditions, and the result is seen in the institution, which is one of Ballarat's proudest possession. Instruction is given in all branches of technical work, and the classes are filled with students who are building up for Ballarat a reputation as an industrial centre, which promises to equal that which it formerly held as a mining town. Owing to its bracing climate, its abundant opportunities for recreations, and its accessibilty, Ballarat as a city is an ideal place for educational purposed, and is yearly becoming more and more appreciated throughout the State. The chairman of one of Ballarat's biggests industries claims that the workman can do twice the day's work here that he can do in Melbourne. he was a little enthusiastic over it, perhaps, but it is a well-known fact that the healthy and invigourating Ballarat climate is conducive to both physical and mental activity, and the records of the School provide ample proof of it. One of the most interesting and successful branches of the School of Mines and Industries - if the name be enlarged with the enlargement of its scope - is the Technical Art School. "The City of Statues" has from its earliest days been a stronghold of art. Art schools have flourised here, and in 1905 the Education Department came to the conclusion that the best thing to do with them was to place them under the management of the School of Mines Council. A magnificent new Technical Art School was built at a cost of some 12,000 pounds on the site of the old Supreme Court building, and was formally opened on the 23rd July, 1915. The results have not only been justified but surpassed all anticipations. The most comprehensive list of subjects is taught, and this list is constantly added to. Students have flocked to the art School, which may be said to occupy a unique position in Australia, and its record of success is really astonishing. Its students supply art teachers for the newer schools that are being built, and many occupy leading positinos in important business houses. So well is its reputation known that orders are constantly being received, not only from Victoria, but from other States, for honor boards and challenge shields to be designed and made. The most recent addition to the School of Mines and Industries is the Junior Technical School, for which a new building is now being erected on a portion of the gaol site, transferred to the School of Mines Counci by the Government. At the present moment temporary quarters are being occupied. Some students after passing through the Junior School go straight to employment, continuing perhaps to attend the evening trade classes, while others move on to the senior School. In a review of the work of the School of Mines mention must be made of a series of industrial research carried out under supervision of the Principal. One in particular, regarding the suitability of the local ores for the manufacture of pigments attracted much attention, while the experiemtns on the manufacture of white potery from Victorian clayes were considered of sufficient importance by the Federal Advisory Council of Science and Industry to warrant the appointment of a special investigator. The results of these have been most encouraging, and may have far-reaching consequences. The vocational training of returned soldiers also should not be overlooked. The work was taken in hand from the first, before the Repatriation Department gave assistance, and now with the help of the department of the School has become one of the largest vocational training centres in Victoria outside of Melbourne. The soldiers, trained in a variety of occupations, have made remarkable progress, and already considerable numbers have found employment in local workshops and factories. To sum up, the School is divided into the following departments, each well staffed and equipped: - The School of Mines, science, and Engineering; the Techncial Art School, the Boys' Junior Technical School, the Girl's Preparatory Technical Classes, Trade Classes, and the Commercial School. The school of Mines, science and Engineering, comprises the following branches: - Mining, Metallurgy, Geology, Electrical Engineering, Civil Engineering, Mechanical Engineering, Applied Chemistry, and Pharmacy. Battery treatments, Cyanide Testing, Smelting, Assays, and Clay Testing from a regular part of the School's work. Students gaining qualifications obtain concession in their courses at the university, should they proceed there to continue their studies. The technical Art school curriculum includes training in all branches of pictorial and applied art, an Architectural Diploma Course, a Draughtman's Course, technical Art teachers' Course, Photography,Ticket Writing, Art Metal Work, Woodcarving, Needlework, and Leather work. The Trade Classes give instruction in Telephone Mechanics, telegraphy, Carpentry, Cabinet Making, Plumbing, Blacksmithing, Fitting, Electric Wiring, and Printing. Numerous Scholarships are offered every year, and altogether students will find few places to equal the Ballarat School of Mines and Industries as a training place for their life's work. One of the first in the continent to be established, its Jubilee finds it still in the front rank, keeping pace with the times, and offering to the youths of this country the means of taking advantage of Australia's teeming opportunities. william, battery, smith, herbert, drawing from the antique, ballarat school of mines botanical gardens, ballarat school of mines, redmond barry, alfred mica smith, james bickett, museum, dick richards, ballarat junior technical school, s m b, ballarat school of mines and industries, ballarat technical art school, model mine, james m bickett, j m bickett, roderick murchison, vocational training rooms, wesley church, methodist church, alexander peacock, lathes, repatriation, repatriatin department, war service, school council, baragwanath, gold mining, mining laboratory, plaster cast, r.w. richards, anniversary, jubilee -
Flagstaff Hill Maritime Museum and Village
Ships 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 and itemsShip's wheel, brass, attached to brass pillar. Base has 6 holes in it for securing it in place.. Top of 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