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Mechanical

Society: ASMEMain Category: MechanicalSub Category: Air and Space TransportationEra: 1970-1979DateCreated: 1972Cradle of Aviation MuseumEast Garden CityState: NYZip: 11530Country: USAWebsite: http://www.asme.org/about-asme/history/landmarks/topics-a-l/air-and-space-transportation/-218-apollo-lunar-module-lm-13-%281972%29Creator: Grumman Aircraft Engineering Corp
The Apollo lunar module (LM-13) was developed by the Grumman Aircraft Engineering Corp. (now Northrop Grumman). The LM's main functions were to carry two astronauts from lunar orbit to the moon's surface, and then return them to lunar orbit to rendezvous and dock with the Apollo command-service modules. On the surface, the LM served as a shelter and base of operations as the astronauts carried out their exploration and experiments. On July 20, 1969, the LM "Eagle" touched down on the moon, becoming the first piloted spacecraft to land on a celestial body other than Earth.
YearAdded:
2002
Image Credit: Courtesy Flickr/Michael Gray (CC BY-SA 2.0) Image Caption: The Apollo Lunar Module LM-13 on display in the Cradle of Aviation Museum Era_date_from: 1972
Society: ASMEMain Category: Mechanical, RoadSub Category: Road TransportationEra: 1940-1949DateCreated: 1940US Marine Corps Air-Ground MuseumQuanticoState: VAZip: A 22134Country: USAWebsite: http://www.asme.org/about-asme/history/landmarks/topics-m-z/road-and-off-road-transportation/-193-alligator-amphibian-%281940%29Creator: Roebling, Donald
The "Alligator" amphibian tractor is the progenitor of all amphibian assault vehicles used since 1941, a pioneer venture both in its design and the materials used in its construction. Donald Roebling, a grandson of Colonel Washington Roebling (designer of the Brooklyn Bridge), built an amphibian tractor to rescue victims of Florida's devastating hurricanes (particularly those in 1926, 1928, and 1932 that hit southern Florida).
YearAdded:
1997
Image Credit: Public Domain (US Marine Corps)Image Caption: An Alligator Amphibian on the slope of a Landing Craft Tank, armed with machine gunsEra_date_from: 1940
Society: ASMEMain Category: MechanicalSub Category: Research and DevelopmentEra: 1900-1909DateCreated: 1908Alden Research LaboratoryHoldenState: MAZip: 01520Country: USAWebsite: http://www.asme.org/about-asme/history/landmarks/topics-m-z/research-and-development/-75-alden-research-laboratory-rotating-boom-%281908%29Creator: Allen, Charles M.
The idea of constructing a rotating boom for hydromechanical tests at the Alden Hydraulic Laboratory originated with Professor Charles Metcalf Allen, head of the lab from 1896 to 1950. The original boom was designed in 1908 by Professor Allen, assisted by two Worcester Polytechnic Institute students. Professor Allen needed a moving test stand for hydraulic experiments and for rating current meters.
YearAdded:
1982
Image Credit: Courtesy ASMEImage Caption: L.J. Hooper (left), Charles M. Allen (center) and Clyde W. Hubbard (right) sit together on the rotating boom.Era_date_from: 1908
Ljungstrom Air Preheater
Society: ASMEMain Category: MechanicalSub Category: Manufacturing, Mechanical Power Production - SteamEra: 1920-1929DateCreated: 1920Tekniska MuseetStockholmCountry: SwedenWebsite: http://www.asme.org/about-asme/history/landmarks/topics-m-z/manufacturing---2/-185-ljungstrom-air-preheater-%281920%29, https://www.asme.org/getmedia/c7cf3d83-508f-4946-b476-9399c390fc83/185-Ljungstrom-Air-Preheater.aspxCreator: Ljungstrom, Fredrik

The Ljungstrom air preheater is a regenerative heat exchanger, invented in the 1920s and soon used throughout the world. Dr. Fredrik Ljungstrom, then technical director at Aktiebolaget Ljunstrom Angturbin, invented it for preheating combustion air in boiler plants, but the use has expanded to include energy recovery in combination with the removal of oxides of sulfur and nitrogen.

YearAdded:
1995
Image Credit: Public DomainImage Caption: Ljungstrom Air PreheaterEra_date_from: 1920
ALCOA 50,000-ton Hydraulic Forging Press
Society: ASMEMain Category: MechanicalSub Category: ManufacturingEra: 1950-1959DateCreated: 1954Aluminum Company of AmericaClevelandState: OHZip: 44105Country: USAWebsite: https://www.asme.org/about-asme/who-we-are/engineering-history/landmarks/71-alcoa-50000-ton-hydraulic-forging-pressCreator: Mesta Machine Company

This 50,000-ton die-forging press is among the largest fabrication tools in the world. It was designed and built for the U.S. Air Force by the Mesta Machine Company of Pittsburgh, following the discovery of a 30,000-ton press used by the Germans in World War II (later acquired by the Soviet Union). By 1950, a Heavy Press Program was organized to establish a self-sustaining industrial base for a press capable of producing large forgings and extrusions for the United States. The 50,000-ton Mesta press was one of the first built under this program between 1952 and 1955.

YearAdded:
1981
Image Caption: The true enormity of the ALCOA 50,000-ton Hydraulic Forging Press can be fully appreciated when put into comparison of the average-sized person (lower right and on the platform).Era_date_from: 1954
Saugus Ironworks
Society: ASMEMain Category: MechanicalSub Category: Minerals Extraction & RefiningEra: 1600sDateCreated: 1647 Ironworks National Historic SiteSaugusState: MAZip: 01906Country: USAWebsite: http://www.asme.org/about-asme/history/landmarks/topics-m-z/minerals-extraction-and-refining/-7-saugus-ironworks-%281647%29, https://www.asme.org/getmedia/f0a3f427-43a2-4371-aa52-73a1b579d9e0/7-Saugus-Ironworks.aspxCreator: Winthrop the Younger, John

The Saugus Ironworks, the first commercial ironworks in North America, was an impressive technological achievement for an early colony. The same basic processes are used today: reducing iron oxide with carbon to produce metallic iron that can be cast in a mold, producing wrought iron by puddling cast iron, and fabricating wrought iron with power hammer and rolls.

YearAdded:
1975
Image Credit: Courtesy Flickr/Kristin Shoemaker (CC BY-ND 2.0)Image Caption: One of the Saugus Ironworks' water wheels in motionEra_date_from: 1647
Reuleaux Collection of Kinematic Mechanisms
Society: ASMEMain Category: MechanicalEra: 1800-1829DateCreated: 1882Sibley School of Mechanical and Aerospace EngineeringIthicaState: NYZip: 14853Country: USAWebsite: http://www.asme.org/about-asme/history/landmarks/topics-a-l/education/-232-reuleaux-collection-of-kinematic-mechanisms-a, https://www.asme.org/getmedia/f47f8dae-5d5c-4b9e-abd0-1ff665b17100/232-Reuleaux-Collection-of-Kinematic-Mechanisms-at-Cornell-University.aspxCreator: Reuleaux, Franz

Kinematics is the study of geometry of motion. Reuleaux designed the models in the Cornell collection as teaching aids for invention, showing the kinematic design of machines. The mechanisms in the collection represent the fundamental components of complex machines and were conceived as elements of a basic “language of invention.” Today the models are still used in the teaching of machine design and synthesis, robotics, dynamics, architectural drawing and mathematics.

YearAdded:
2004
Image Credit: Courtesy ASMEImage Caption: A page taken from Gustav Voigt's catalog of Reuleaux's Mechanisms,Era_date_from: 1882
Radio City Music Hall Hydraulically Actuated Stage
Society: ASMEMain Category: MechanicalEra: 1930sDateCreated: 1932Radio City Music HallNew YorkState: NYZip: 10020Country: USAWebsite: http://www.asme.org/about-asme/history/landmarks/topics-a-l/entertainment/-217-radio-city-music-hall-hydraulically-actuatedCreator: Clark, Peter

The precision "choreographed" staging of Radio City Music Hall offers size and versatility, unlike any other. Built in 1932 by Peter Clark, its innovative elevator system is a forerunner of other stage designs (including the Metropolitan Opera House) as well as aircraft carrier systems built in World War II. These elevators can handle people, animals, props and scenery at variable speeds, delivering them to the stage or above and also dropping out of sight in front to reappear again in the back, just as effectively.

YearAdded:
2001
Image Credit: Public Domain (Author's Choice)Image Caption: Underneath the Orchestra Lift at the Radio City Music Hall
Pullman Sleeping Car Glengyle
Society: ASMEMain Category: MechanicalSub Category: Rail TransportationEra: 1900-1909DateCreated: 1911Museum of the American RailroadDallasState: TXZip: 75210Country: USAWebsite: http://www.asme.org/about-asme/history/landmarks/topics-m-z/rail-transportation---2/-125-pullman-sleeping-car-glengyle-%281911%29, https://www.asme.org/getmedia/379a7270-9504-4fc0-a38d-bce7a0cea4a5/125-Pullman-Sleeping-Car-Glengyle-1911.aspxCreator: Pullman, George

The Glengyle is the earliest known survivor of the fleet of heavyweight, all-steel sleepers built by Pullman Company. The design was introduced in 1907 as a marked improvement over the wooden version then in use. Some 10,000 were built, in various configurations, the last in 1931. The Glengyle is original in its interior and most of its components.

YearAdded:
1987
Image Credit: Courtesy ASMEImage Caption: Pullman Sleeping Car GlengyleEra_date_from: 1911
Pierce-Donachy Ventricular Assist Device
Society: ASMEMain Category: MechanicalSub Category: Biomedical EngineeringEra: 1970-1979DateCreated: 1973Milton S. Hershey Medical CenterHersjeyState: PAZip: 17033Country: USAWebsite: https://www.asme.org/about-asme/who-we-are/engineering-history/landmarks/142-pierce-donachy-ventricular-assist-deviceCreator: Pierce, William, Donachy, James

This is the first extremely smooth, surgically implantable, seam-free pulsatile blood pump to receive widespread clinical use. In its use in more than 250 patients, it has been responsible for saving numerous lives. When used as a bridge to transplant, the pump has a success rate greater than 90 percent. There has never been a device-failure-related fatality of any of these patients. A successful heart-assist pump could save an estimated fifteen thousand individuals annually.

YearAdded:
1990
Image Credit: Courtesy Wikipedia/Madhero88 (CC BY-SA 3.0)Image Caption: Pierce-Donachy Ventricular Assist DeviceEra_date_from: 1973
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