Showing 96 items
matching industrial equipment
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Geoffrey Kaye Museum of Anaesthetic History
Equipment - Kit, Resuscitator, Commonwealth Industrial Gases Ltd, c.1960
... cushioning, still in original packaging. Equipment Kit, Resuscitator ...Green case with lock at the front and plastic green handle on top with a manufacturer's label stuck on top. Inside the case is divided into three separate section, one containing a clear plastic mask with latex cushioning, the second containing a grey resuscitation bulb and the third containing a smaller clear plastic mask with latex cushioning, still in original packaging.Green manufacturer's label on top of case: THE CIG AIR-VIVA RESUSCITATOR Inside case: Original label 'Operating Instructions'ambu, resuscitator, cig air-viva -
Geoffrey Kaye Museum of Anaesthetic History
Equipment - Cylinder, Oxygen
In Australia, the wholesale druggists Fenton, Grimwade and Company, established in 1876, were producing small quantities of oxygen for medical and industrial purposes(11,11). In 1910, they produced a booklet promoting the therapeutic use of oxygen, suggesting it's use in pulmonary and cardiac affections, asphyxia, and morphine poisoning(9). Eventually, oxygen was to play a more significant role in medicine following two significant events. In 1895, Karl Von Linde succeeded in liquefying air, and then fractionally distilling its individual components, including oxygen. This new technique for the production of oxygen from air was revolutionary, but large demand for it did not develop in the wider community until Claude and Hess managed to compress acetylene into cylinders safely in 1897, keeping the highly explosive fuel stable by dissolving it in acetone. By 1900, the oxy-acetylene welding technique was born, and the demand for oxygen for industrial purposes accelerated worldwide. In Australia, Russell Grimwade, working for his father's company, ordered the first oxygen plant to be built in Australia in 1910. (George Kantianis, 2013)Medium sized black coloured cylinder with rounded base once containing oxygen with a large black on white diamond shaped manufacturer's label adhered to the front. Much of the label has been degraded with missing bits, and rust stains.Printed on to manufacturer's label: OFFICIALLY PREPARED FOR MED? / AUSTOX [in logo] / COMPRESSED / OXYGEN / CONTENTS / 33 [handwritten in pencil] Imperial Gallons / KEEP COOL / Australiand Oxygen and Industrial ? / Pty. Ltd. / MELBOURNEoxygen, cylinder, therapeutic, russell grimwade -
Geoffrey Kaye Museum of Anaesthetic History
Equipment - Resuscitator Unit, c. 1960
Mechanical resuscitation devices, such as the Pulmotor and Lungmotor, were popular in the early part of the twentieth century. Their use waned in the 1920s as significant bodies like the British Medical Research Council and American Red Cross refused to endorse them. The most popular of the resuscitators to emerge in the 1930s was the E&J (Ericson and Johnson) resuscitator. The device was soon widely available, vigorously promoted with support from many medical practitioners. They were soon to be found in hospitals, emergency services like the ambulance and fire brigade, and voluntary life-saving organisations. In Australia, Norman James, director of anaesthesia at the Royal Melbourne Hospital, developed an interest in equipment for ambulances and the resuscitation of drowning victims. Little in the way of practical, portable equipment was available to either the ambulances or the voluntary life-saving organisations, such as Surf Life Saving Australia (SLSA); American resuscitators, like the E&J, were expensive and bulky to import. James designed a simple portable resuscitation device for local use after being approached by Jack Conabere, secretary of the Elwood Life Saving Club (ELSC). The resulting Royal Melbourne Hospital resuscitator, or the R.M. resuscitator as it was marketed, was a simpler, manual version of those available overseas. It was gas driven with a plunger, marked “Press”, and a safety valve. The small working unit attached directly to the facemask. Once the patient was positioned facedown and the airway cleared of debris, the mask was placed firmly over the face. The plunger allowed gas to flow and lung inflation; releasing the plunger allowed expiration. This simple resuscitator was marketed by Commonwealth Industrial Gases (CIG) and became very popular in Australia with volunteer and professional rescue organisations. It represents one of the many innovations in resuscitation equipment that resulted from cooperation between volunteer life savers and medical practitioners. Norman James worked closely with Jack Conabere and the Government Pathologist to develop the equipment. ELSC was the first life saving club to use the resuscitator on the beach. While conducting an early training exercise on 23 December 1951, they used it to successfully resuscitate a man who had drowned after capsizing his home made yacht. The R.M. resuscitator was also used in more inventive ways. At Fairfield Hospital in Melbourne, a group of physiotherapists and doctors did some innovative work with polio patients, teaching them glossopharyngeal (or “frog”) breathing, as a means of becoming less dependent on ventilators. In 1981, the Australian Standards Association stated that the RM head failed to meet its revised standards and it was withdrawn from the market. Red leather suitcase with black leather trim with metal studs. There are clip locks for locking the suitcase in the closed position. The suitcase contains equipment for oxygen resuscitation. There is a space allocated for two oxygen cylinders, however there are no cylinders present.Embossed into metal plaque: The C.I.G. / Oxy-viva / PORTABLE UNIVERSAL OXYGEN RESUSCITATORresuscitation, portable, surf life saving australia, royal melbourne hospital, rm resuscitator -
Flagstaff Hill Maritime Museum and Village
Leisure object - Tobacco Pipe, Early 20th century
People in ancient civilisations smoked pipes during various healing and religious ceremonies. By the end of the 15th century, after tobacco was discovered in America, smoking had become a common pastime for everyday people. From that time, tobacco pipes were fashioned from many materials ranging from gold and silver to corn cobs and clay. A popular material was meerschaum, an expensive, soft, white stone from Turkey. In the 1820s, French craftsmen carved pipes out of the wood from the growth on the root of a Mediterranean White Heath. This material became increasingly popular due to its durable, heat-resistant qualities. The growth was called ‘bruyere’, now anglicised to ‘briar’ wood. Bakelite was the first plastic made from synthetic components. It was developed by Leo Baekeland of New York in 1907. The material was heat-resistant and could be moulded into any shape and hardened to keep its shape. This invention greatly impacted the industrial world and the products available to the domestic market, making more objects available at reduced cost.This smoker's tobacco pipe symbolises one of the leisure activities of the early 20th century that has continued into modern times. The shape and materials of the pipe represent a point in time in the evolution of tobacco pipes, including the revolutionary impact that the 1900s invention of Bakelite had on objects available in the domestic and industrial markets.Smoker's tobacco pipe; a round brown wooden pipe bowl joined to a dark brown mouthpiece. The French pipe's bowl is made from briar wood, and its mouthpiece is Bakelite. There is an inscription on the pipe."French Briar Pipe"warrnambool, shipwreck coast, flagstaff hill, flagstaff hill maritime museum, flagstaff hill maritime village, smoker's pipe, tobacco pipe, briar wood pipe, wooden pipe, smoking, french pipe, bakelite, smoker's equipment -
Flagstaff Hill Maritime Museum and Village
Container - Ship Tank, Early 20th century
Cubed iron ship tanks were invented by Richard Trevithich in 1808, in partnership with Robert Dickson, and the design was patented that year. The invention was an improvement on the wooden casks or barrel that were in used at the time, as the ship tanks were more secure and their shape was much more economical on storage space. The robust metal tanks were originally made to transport water, but their preserving quality enabled them to transport perishable dry goods such as grain on long voyages, as well as other forms of liquid and solid cargo. The first ship tanks were made from sheets of iron, and later mild steel sheets, with double riveted edges and corners. A round cast iron lid with handle grips was fitted snugly into the top opening, providing an air tight and water tight seal. Brass taps were often fitted into the base. Sailing ships began using the new ship tanks on Australian voyages from around the 1830s, storing ford and water for those on board, and filling them with other cargo. A large number of the ship tanks were repurposed in 1838 for the Victoria Settlement at Port Essington, N.T., as they were able to protect the food, clothing and other stores from termite and insect damage. Other ‘recycled’ ship tanks were cut in half and used as washing tubs or cookers. A 1929 catalogue from Hudson’s Tank Stores advertised square tanks that contained around 600 litres – 160 gallons – which equals internal measurement of 33.25 inches – 84.5 centimetres – per side ship tanks are still made and sold in 1952 by the Globe Tank and Foundry in Wolverhampton, England, which was incorporated in 1922. Today, ship tanks can be seen around Australia. Wilsonson’s Promontory Lightstation has the lid from a ship tank that was used on site for the storage of water. Some have been repurposed as domestic water tanks and dog kennels, others for eucalyptus distilleries. Flagstaff Hill has two ship tanks in it grounds. The Campaspe Port at Echuca, once aa bustling river port, has a ship tank beside the locomotive yard. The lids of ship tanks are collectable items. Richard Trevithick (1771-1833): - Trevithick was born in 1771 in Cornwall, England. He was a famous British engineer and inventor during the Industrial Revolution, known for his invention of first full scale working railway, high pressure steam locomotive, which he demonstrated hauling a railway train in 1804 . He set up a small workshop in 1808 at 72 Fore Street, Limehouse, London, to make iron ship tanks, and this invention was instrumental in replacing the wooden casks formerly used for storage on ships. He was involved with mining technology, iron foundering and ship equipment. Ship tanks changed the way that cargo was transported on ships and other vehicles from the 1830s and were used into the mid-20th century. The ship tanks’ advantages were that they could store more content, lasted longer, were waterproof and airtight, stackable and could be repurposed for many uses other than water, such as fuel, dry goods and domestic cargo. They have even been used aa dog kennels and cookers. Ship tanks were part of the evolving methos to transport water, food and cargo, which changed in 1956 when Malcolm McLean invented the large, rectangular shipping containers that are in use today; they speed up the process of loading on and off the ships, saving time and money. Ship tank: a cubed iron container with an offset hole on one side. The hole has cutouts for securely attaching a lid. This tank is on its side on the ground with the opening facing sideways. The side facing upwards has a wooden bung in a round hole. The ship tank is made from six square, thick iron sheets, rolled and riveted along the edges. The inside has a black sticky coating, possibly bitumen, and a strong creosote odour. There are small remnants of green paint on the outer surface.flagstaff hill, flagstaff hill maritime museum and village, warrnambool, maritime museum, maritime village, great ocean road, shipwreck coast, iron cube, water tank, shipping container, ship tank, ship's tank, ship tanks, marine container, richard trevithich, 1808, robert dickson, water transport, water storage, iron foundry, steel sheets, iron sheets, revets, victoria settlement, port essington, globe tank and foundry, wolverhampton, british engineer, british inventor, wooden casks -
Ballarat Tramway Museum
Document, "Electric Supply", 10/1923
Typed extract from "Industrial Geelong", titled "Electric Supply", following a visit by the Institution of Civil Engineers 30/10/1923 compiled by G R King, Principal of the Gordon Institute of Technology. Describes the power station, its equipment, the size of the various components, capacities, the tramway rolling stock, track construction, and the mains and installation sections of MESCo.Yields information about the Geelong Power Station and MESCo operations in 1923.Document - 2 quarto typed sheets, stapled in top left hand corner. Has five punch holes on the left hand side.tramways, mesco, geelong, tours, geelong power station