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First practical US helicopter, pioneering the single-main-rotor concept
Society: ASMEMain Category: MechanicalSub Category: Air and Space TransportationEra: 1930-1939DateCreated: 1939Henry Ford MuseumDearbornState: MIZip: 48214Country: USAWebsite: http://www.asme.org/about-asme/history/landmarks/topics-a-l/air-and-space-transportation/-95-sikorsky-vs-300-helicopter-%281939%29, https://www.asme.org/getmedia/b997b811-c5c4-44e3-87d3-239bda559734/95-Sikorsky-VS-300-Helicopter.aspxCreator: Sikorsky, Igor I.

America's first practical helicopter, it pioneered the single main rotor concept that became the predominant helicopter configuration throughout the world. The principles that were developed and demonstrated by the VS-300 had direct application in the design of the early mass-production helicopter, marking the beginning of the world's rotorcraft industry.

The initial flight of the VS-300 was piloted by its designer, Igor I. Sikorsky (1889-1972), on September 14, 1939, in Stratford, Connecticut.

YearAdded:
1984
Image Credit: Courtesy ASMEImage Caption: Sikorsky VS-300 HelicopterEra_date_from: 1939
Rocky River Pumped-storage Hydroelectric Plant
Society: ASMEMain Category: Electric, MechanicalSub Category: WaterEra: 1920-1929DateCreated: 1929Rocky River StationHartfordState: CTZip: 06101Country: USAWebsite: http://www.asme.org/about-asme/history/landmarks/topics-a-l/electric-power-production-water/-56-rocky-river-pumped-storage-hydroelectric-plant, https://www.asme.org/getmedia/1b393410-996b-4172-b5b7-628efc383e7d/56-Rocky-River-Hydroelectric-Station.aspxCreator: Connecticut Light & Power Company

The Connecticut Light & Power Company pioneered the use of pumped storage in the United States at this hydroelectric station. First operated in 1929, the Rocky River Plant had two reversible pumps that somewhat resemble large hydroelectric turbines. This permitted significant improvements in the system efficiency of the company's network of hydroelectric and thermal-electric power generating plants. Water is pumped uphill through a penstock and stored in Lake Candlewood.

YearAdded:
1980
Image Credit: Courtesy ASMEImage Caption: Rocky River Pumped-storage Hydroelectric PlantEra_date_from: 1929
Quincy Mining Company No. 2 Mine Hoist
Society: ASMEMain Category: MechanicalSub Category: Materials Handling & ExtractionEra: 1920-1929DateCreated: 1920The Quincy Mine Hoist AssociationHancockState: MIZip: 49930Country: USAWebsite: https://www.asme.org/about-asme/who-we-are/engineering-history/landmarks/96-quincy-mining-company-no-2-mine-hoist, https://www.asme.org/getmedia/a59133b1-6a0e-4305-9e3d-096da65f88b1/96-Quincy-Mining-Company-No2-Mine-Hoist.aspxCreator: Quincy Mine Company

The largest mine hoist in the world, it serves the two incline skipways of Shaft No. 2, almost 9,300 feet long. The overhead winding drum has a diameter of 30 feet, of which the cylindrical center section is 10 feet long. The two 10-foot long end sections taper down to a 15-foot diameter. Wire hoisting ropes (almost 27 tons) could be wound onto a small end of the cylindrical drum as the other rope unwound from the cylindrical section.

YearAdded:
1984
Image Credit: Public DomainImage Caption: Quincy Mine No 2 Hoist House. Two cooling ponds sat alongside the hoist house which served the cross-compound condensed Nordberg engine. After passing through the condenser, hot water went through sprays to be cooled before recycling.Era_date_from: 1920
Owens AR Bottle Machine
Society: ASMEMain Category: MechanicalSub Category: ManufacturingEra: 1900-1909DateCreated: 1912Item no longer existsCountry: USAWebsite: https://www.asme.org/about-asme/who-we-are/engineering-history/landmarks/86-owens-ar-bottle-machine, https://www.asme.org/getmedia/a9e54878-05b1-4a91-a027-fe3b7e08699e/86-Owens-AR-Bottle-Machine.aspxCreator: Owens, Michael J.

Only since 1912 have glass jars and bottles been in cheap and plentiful supply for pharmaceuticals, household products, food and beverages, and an endless variety of uses. The bottle-making machine introduced the safety, standardization, quality, and convenience of glass containers. Not only did they revolutionize the industry, the Owens machines ended child labor in glass-container plants. In 1913, the National Child Labor Committee of New York City said the rapid introduction of the automatic machine did more to eliminate child labor than they had been able to do through legislation.

YearAdded:
1983
Image Credit: Courtesy ASMEImage Caption: Owens AR Bottle MachineEra_date_from: 1912
Michigan-Lake Superior Power Hydroelectric Plant
Society: ASMEMain Category: Electric, MechanicalSub Category: WaterEra: 1900-1909DateCreated: 1902Michigan-Lake Superior Power Hydroelectric PlantSaulte Sainte MarieState: MICountry: USAWebsite: http://www.asme.org/about-asme/history/landmarks/topics-a-l/electric-power-production-water/-61-michigan-lake-superior-power-hydroelectric-pla, https://www.asme.org/getmedia/9a6fbefb-8d74-4a9d-aaec-f5838421d7e4/61-Michigan-Lake-Superior-Plant.aspxCreator: Clergue, Francis, von Schon, Hans A.E.

This low-head operating plant is representative of nineteenth-century hydropower-plant practice using many small turbines in contrast to twentieth-century use of few large turbines and generators. Its 40,000 horsepower capacity made it the largest in the country using turbines of American design (McCormick-Francis). The contemporary and larger Niagara installation used turbines of French design (Fourneyron). The entrepreneur of this plant was Francis Clergue, a lawyer, who employed as his chief engineer Hans A.E. von Schon, a German immigrant who had served with the U.S.

YearAdded:
1981
Image Credit: Courtesy ASMEImage Caption: Michigan-Lake Superior Power Hydroelectric PlantEra_date_from: 1902
Idols Station, Fries Manufacturing & Power Company
Society: ASMEMain Category: Electric, MechanicalSub Category: WaterEra: 1890-1899DateCreated: 1898Duke Power Company-Winston-SalemState: NCZip: 27012Country: USAWebsite: http://www.asme.org/about-asme/history/landmarks/topics-a-l/electric-power-production-water/-99-idols-station,-fries-manufacturing---power-comCreator: Fries Manufacturing and Power Company

This run-of-the-river plant is a typical example of late nineteenth-century small-scale (750 kilowatt) low-head hydroelectric power technology. The Fries Manufacturing and Power Company began operating the Idol's Station on April 18, 1898, making it the first commercial hydroelectric plant in North Carolina involving long-distance power transmission, fourteen-miles distance at 10,000 volts. Idol's was an important power source for transportation, lighting, and industry in the Winston-Salem area.

YearAdded:
1984
Image Credit: Courtesy ASMEImage Caption: Idols Station, Fries Manufacturing & Power CompanyEra_date_from: 1898
Society: ASMEMain Category: Electric, MechanicalSub Category: SteamEra: 1890-1899DateCreated: 1891Henry Ford MuseumDearbornState: MIZip: 48124Country: USAWebsite: http://www.asme.org/about-asme/history/landmarks/topics-a-l/electric-power-production-steam/-49-marine-type-triple-expansion--engine-driven-dy, http://files.asme.org/ASMEORG/Communities/History/Landmarks/5537.pdfCreator: Vleck, John Van, Joy, David

This machine, which began operation on December 15, 1891, for the New York Edison Illuminating Company, represents the beginning of large-scale electric power generation in the United States. The generator was designed by chief engineer John Van Vleck, David Joy (known in England for his valve gear), and S. F. Prest.

YearAdded:
1980
Image Credit: Courtesy ASMEImage Caption: Engine-Driven DynamoEra_date_from: 1891
Mount Washington Cog Railway
Society: ASMEMain Category: MechanicalSub Category: Rail TransportationEra: 1860-1869DateCreated: 1869Mt. WashingtonCoos CountyState: NHZip: 03589Country: USAWebsite: http://www.asce.org/Project/Mount-Washington-Cog-Railway/Creator: Aiken, Walter, Marsh, Sylvester

People thought inventor Walter Aiken was crazy when he proposed a railway to the top of Mt. Washington.  Aiken built a model of the roadbed and track with a cog rail system, but entrepreneur Sylvester Marsh is credited for launching the Cog Railway and bringing Aiken's ideas to fruition.

In 1858 Marsh applied to the New Hampshire Legislature for a charter to build and operate the steam railway and was granted permission in 1859.  Legend has it that an amendment was added offering permission to extend the railway to the moon.

YearAdded:
1975
Image Credit: Courtesy Flickr/Dennis Jarvis (CC BY-SA 2.0)Image Caption: Mount Washington Cog RailwayEra_date_from: 1869
Aberdeen Range, Aberdeen Proving Ground
Society: ASMEMain Category: MechanicalSub Category: Research and DevelopmentEra: 1940-1949DateCreated: 1943US Army Test & Evaluation Command - Ryan BuildingAberdeenState: MDCountry: USAWebsite: https://www.asme.org/about-asme/who-we-are/engineering-history/landmarks/80-aberdeen-range-aberdeen-proving-groundCreator: U.S. Army

During the 1930's, research into advanced ballistic measurement techniques began at Aberdeen Proving Ground—the world's first large-scale, fully-instrumented ballistic range producing data on the aerodynamic characteristics of missiles in free flight.

YearAdded:
1982
Image Credit: Courtesy U.S. Army RDECOMImage Caption: High Explosive shells at Aberdeen Proving GroundEra_date_from: 1943
AAR Railroad-wheel Dynamometer
Society: ASMEMain Category: MechanicalSub Category: Research and DevelopmentDateCreated: 1955Association of American Railroads, Transportation Technical CenterPuebloState: COCountry: USAWebsite: https://www.asme.org/about-asme/who-we-are/engineering-history/landmarks/136-aar-railroad-wheel-dynamometer, https://www.asme.org/getmedia/4a5cc052-426b-4d8f-a82a-bf657221c564/136-AAR-Railroad-wheel-Dynamometer-1955.aspxCreator: Southern Pacific Railroad

This inertia dynamometer is used to test railroad wheels under controlled conditions that can greatly exceed normal service. It is the first and only railroad dynamometer to test track wheels using vertical and lateral loads, as well as thermal braking loads, at the wheel rim. It can also test railway car and locomotive axles.

YearAdded:
1988
Image Caption: AAR Railroad-wheel DynamometerEra_date_from: 1955
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