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The General Motors LS-based small-block engines are a family of V8 and ... The stock cam specifications at .050 lift are: 190/191 duration, .466/.457 lift, 114 LSA ...
Higher compression, larger intake valves, a Holley four-barrel, improved intake and exhaust, and a more aggressive camshaft, the next year increased it all the way to 205 hp (153 kW). [3] The engine was unchanged in 1954 except for the vacuum advance mechanism. [3] These engines used hydraulic valve lifters while Ford truck engines used solid.
Its solid-lifter cam, known as the "30-30 Duntov" cam named after its 0.03 in (0.8 mm)/0.030 in hot intake/exhaust valve-lash and Zora Arkus-Duntov (the first Duntov cam was the 0.012 in (0.3 mm)/0.018 in (0.5 mm) 1957 grind known as the '097, which referred to the last three digits of the casting number) the "Father of the Corvette", was also ...
In 1971, the LS-5 produced 365 hp (272 kW) and 550 lb⋅ft (746 N⋅m), and the LS-6 option came in at 425 hp (317 kW) and 575 lb⋅ft (780 N⋅m). In 1972, only the LS-5 remained, when SAE net power ratings and the move towards emission compliance resulted in a temporary output decline, due to lowered compression, to about 270 hp (201 kW) and ...
The 637-cubic-inch (10.4 L) 637 is essentially the V8 version of the 478, sharing the 5.125 in × 3.86 in (130.2 mm × 98.0 mm) bore and stroke and having a single camshaft. It was the largest-displacement production gasoline V8 ever made for highway trucks.
The Twin Cam made its racing debut in May 1962 as a Cosworth Mk.X in a Lotus 23 driven by Jim Clark at the Nürburgring. Clark led the field until being overcome by exhaust fumes. [9] Twin Cam made several appearances in Formula 1 in the Cosworth Mk.XVI form during the 1 + 1 ⁄ 2-litre (92 cu in) formula that ran from 1961-65.
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The cam can be seen as a device that converts rotational motion to reciprocating (or sometimes oscillating) motion. [clarification needed] [3] A common example is the camshaft of an automobile, which takes the rotary motion of the engine and converts it into the reciprocating motion necessary to operate the intake and exhaust valves of the cylinders.
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