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Hose for conveying force to train brakes by a differential in air pressure. Contains either high-pressure compressed air or air at lower than atmospheric pressure (vacuum), depending on whether the locomotive has an air brake or vacuum brake system. [6]: 483–486 [3]: 1 Water compartment Tank for water to be used by the boiler to produce steam.
Lionel made its trains larger than those of its competitors, making them appear a better value. Competitors criticized the lack of realism of Lionel's trains. Cowen had been unwilling to invest in the equipment necessary for lithography, so its early offerings were simply painted in solid colors of enamel paint with brass detail parts. Lionel ...
By 2006, TMCC was replaced by the Cab-2 and the LEGACY system. TMCC today is used in Lionel products mainly in motorized units, switches, and some accessories. Lionel has since licensed TMCC to some of its competitors, including K-Line, and aftermarket circuit boards are available to add TMCC to O scale and S scale trains that lack the capability.
MTH has announced their intention to install DCS compatible decoders in S scale trains beginning in 2013. [1] Separate sale decoder kits have been offered for installation in all of the above noted scales except H0 and S. DCS is predominantly used in three-rail O gauge. Its chief competitors in three-rail O are Lionel's TMCC and Legacy systems.
The Lionel Corporation used the 2-6-4 wheel arrangement in many of its model steam locomotives, including the 2037 used in the infamous pastel-coloured Girls' Train. [9] Their 2-6-4 model was based on the Pennsylvania Railroad’s K4 class pacific, even though this was a 4-6-2 rather than a 2-6-4. [10]
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The main notations are the Whyte notation (based on counting the wheels), the AAR wheel arrangement notation (based on counting either the axles or the bogies), and the UIC classification of locomotive axle arrangements (based on counting either the axles or the bogies).
Diagram of a typical locomotive air horn power chamber, showing operation. Train horns are operated by compressed air, typically 125–140 psi (8.6–9.7 bar), and fed from a locomotive main air reservoir. When the engineer opens the horn valve, air flows through a supply line into the power chamber at the horn's base (diagram, right).
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