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  2. Drive shaft - Wikipedia

    en.wikipedia.org/wiki/Drive_shaft

    Several different types of drive shaft are used in the automotive industry: One-piece drive shaft; Two-piece drive shaft; Slip-in-tube drive shaft; The slip-in-tube drive shaft is a new type that improves crash safety. It can be compressed to absorb energy in the event of a crash, so is also known as a "collapsible drive shaft".

  3. List of gear nomenclature - Wikipedia

    en.wikipedia.org/wiki/List_of_gear_nomenclature

    Shaft angle. A shaft angle is the angle between the axes of two non-parallel gear shafts. In a pair of crossed helical gears, the shaft angle lies between the oppositely rotating portions of two shafts. This applies also in the case of worm gearing. In bevel gears, the shaft angle is the sum of the two

  4. Front-engine, front-wheel-drive layout - Wikipedia

    en.wikipedia.org/wiki/Front-engine,_front-wheel...

    Front-wheel-drive vehicles tend to suffer from torque steer under heavy acceleration. [5] This is caused by differing drive shaft lengths which in turn results in different incident angles at the joints of the driveshaft. The farther these joints are articulate, the less effective they are at delivering torque to the wheels.

  5. Constant-velocity joint - Wikipedia

    en.wikipedia.org/wiki/Constant-velocity_joint

    A Rzeppa-type CV joint. A constant-velocity joint (also called a CV joint and homokinetic joint) is a mechanical coupling which allows the shafts to rotate freely (without an appreciable increase in friction or backlash) and compensates for the angle between the two shafts, within a certain range, to maintain the same velocity.

  6. Ackermann steering geometry - Wikipedia

    en.wikipedia.org/wiki/Ackermann_steering_geometry

    A simple approximation to perfect Ackermann steering geometry may be generated by moving the steering pivot points [clarification needed] inward so as to lie on a line drawn between the steering kingpins, which is the pivot point, and the centre of the rear axle. [2]

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  8. Rear-engine, rear-wheel-drive layout - Wikipedia

    en.wikipedia.org/wiki/Rear-engine,_rear-wheel...

    Placing the engine near the driven rear wheels allows for a physically smaller, lighter, less complex, and more efficient drivetrain, since there is no need for a driveshaft, and the differential can be integrated with the transmission, commonly referred to as a transaxle. The front-engine front-wheel-drive layout also has this advantage.

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