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The AC6000CW is a 6,000-horsepower (4,500 kW) diesel electric locomotive built between 1995 and 2001 by GE Transportation. It is among the world's most powerful single-engined diesel locomotives. The locomotive was designed for extremely high horsepower needs, such as pulling heavy coal and ore trains.
The MK5000C is a 5,000 hp (3.7 MW) North American diesel-electric locomotive developed by MK Rail.At the time of its introduction in 1994, the MK5000C was the most powerful single prime mover diesel-electric locomotive ever made, a title it would hold for only for one year until GE Transportation released its competing 6,000 hp (4.5 MW) AC6000CW model in 1995.
No. 7 was a Baldwin 28-ton 2-4-4T Forney locomotive (Baldwin classification 10-16 1/4 C-5a) which was scrapped in 1937 along with the rest of the railroad, being badly damaged in the 1931 Wiscasset roundhouse fire. The new locomotive is being constructed traditional techniques and tools, such as a riveted boiler.
Voith Maxima 40CC is the most powerful single-engine diesel-hydraulic locomotive ever built. XA Triplex: Virginian Railway: 700 Baldwin: 1916 Steam 2-8-8-8-4: 532 tonnes (586 short tons) 741 kilonewtons (166,600 lbf) compound — Rebuilt into separate locomotives; Maximum speed approx. 10 mph. Yellowstone
Diagram of Priestman oil engine from The Steam engine and gas and oil engines (1900) by John Perry Petrol–electric Weitzer railmotor, first 1903, series 1906. The earliest recorded example of the use of an internal combustion engine in a railway locomotive is the prototype designed by William Dent Priestman, which was examined by William Thomson, 1st Baron Kelvin in 1888 who described it as ...
The AC4400CW was the first GE locomotive to offer an optional self-steering truck design, intended to increase adhesion and reduce wear on the railhead. [1] This option was specified by Canadian Pacific Railway, Cartier Railway, CSX for their units 201-599, Ferromex, Ferrosur, and Kansas City Southern Railway.
The engines are capable of shorter startup times from idle to load (100 rpm/s) than traditional medium speed diesel engines. [41] To achieve mass balance and distribution within the locomotive, the engines are situated on either side of the transformer, which is located in the center of the locomotive. [24]
Locomotives exported to Indonesia are quite different from other locomotives produced by GE. They use the same type of engine across all models (GE 7FDL-8, except for UM 106T Locomotives which used Alco 12-244E). Despite using the same type of engine, the power capabilities from type to type are different as some models are equipped with dual ...
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