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  2. Chevrolet Chevelle - Wikipedia

    en.wikipedia.org/wiki/Chevrolet_Chevelle

    The Chevrolet Chevelle is a mid-sized automobile that was produced by Chevrolet in three generations for the 1964 through 1977 model years. Part of the General Motors (GM) A-body platform, the Chevelle was one of Chevrolet's most successful nameplates. Body styles included coupes, sedans, convertibles, and station wagons.

  3. Proportioning valve - Wikipedia

    en.wikipedia.org/wiki/Proportioning_valve

    A cross-section of a proportioning safety valve. A proportioning valve is a valve that relies on the laws of fluid pressure to distribute input forces to one or more output lines. Proportioning valves are frequently used in cars and other road vehicles to reduce the brake fluid pressure to the rear brakes. Due to weight distribution during ...

  4. Chevrolet L78 - Wikipedia

    en.wikipedia.org/wiki/Chevrolet_L78

    Between 1966 and 1969 the L78 was the highest-horsepower engine available in Chevrolet's intermediate line via a Regular Production Option (RPO). Despite this, in 1969 an L72 427 cu in (7.0 L), 425 hp (317 kW) engine could be ordered in an intermediate via a Central Office Production Order (COPO).

  5. Chevrolet L72 - Wikipedia

    en.wikipedia.org/wiki/Chevrolet_L72

    The L72 was a 427 cu in (7.0 L) 90° overhead valve V8 big-block engine produced by Chevrolet between 1966 and 1969. Initially rated at 450 horsepower, the rating dropped to 425 hp (317 kW) shortly after its release (although there was no change in power).

  6. Electronic brakeforce distribution - Wikipedia

    en.wikipedia.org/wiki/Electronic_brakeforce...

    The pressure of the rear wheels are approximated to the ideal brake force distribution in a partial braking operation. To do so, the conventional brake design is modified in the direction of rear axle overbraking, and the components of the ABS are used. EBD reduces the strain on the hydraulic brake force proportioning valve in the vehicle.

  7. Hydraulic brake - Wikipedia

    en.wikipedia.org/wiki/Hydraulic_brake

    Unlike air brakes, where a valve is opened and air flows into the lines and brake chambers until the pressure rises sufficiently, hydraulic systems rely on a single stroke of a piston to force fluid through the system. If any vapor is introduced into the system it will compress, and the pressure may not rise sufficiently to actuate the brakes.

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