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  2. Camber angle - Wikipedia

    en.wikipedia.org/wiki/Camber_angle

    The 1960 Milliken MX1 Camber Car has a large negative camber. Camber angle is one of the angles made by the wheels of a vehicle; specifically, it is the angle between the vertical axis of a wheel and the vertical axis of the vehicle when viewed from the front or rear.

  3. Wheel alignment - Wikipedia

    en.wikipedia.org/wiki/Wheel_alignment

    Camber is the angle which the vertical axis of the wheel makes with the vertical axis of the vehicle. This angle is very important for the cornering performance of the vehicles. Generally, a Camber around 0.5-2 degrees is given on the vehicles. Depending upon wheel orientation, Camber can be of three types. 1. Positive Camber

  4. Toe (automotive) - Wikipedia

    en.wikipedia.org/wiki/Toe_(automotive)

    Toe is usually adjustable in production automobiles, even though caster angle and camber angle are often not adjustable. Maintenance of front-end alignment, which used to involve all three adjustments, currently involves only setting the toe; in most cases, even for a car in which caster or camber are adjustable, only the toe will need ...

  5. Caster angle - Wikipedia

    en.wikipedia.org/wiki/Caster_angle

    Excessive caster angle will make the steering heavier and less responsive, although in racing large caster angles are used for improving camber gain in cornering. Caster angles over 7 degrees with radial tires are common. Power steering is usually necessary to overcome the jacking effect from the high caster angle. Some front-end alignment ...

  6. Self aligning torque - Wikipedia

    en.wikipedia.org/wiki/Self_aligning_torque

    Self aligning torque , slip angle , and camber angle are also shown. Self aligning torque ( SAT ), also known as aligning torque or aligning moment ( Mz , moment about the z direction ), is the torque that a tire creates as it rolls along, which tends to steer it, i.e. rotate it around its vertical axis.

  7. Ackermann steering geometry - Wikipedia

    en.wikipedia.org/wiki/Ackermann_steering_geometry

    Ackermann geometry. The Ackermann steering geometry (also called Ackermann's steering trapezium) [1] is a geometric arrangement of linkages in the steering of a car or other vehicle designed to solve the problem of wheels on the inside and outside of a turn needing to trace out circles of different radii.

  8. Beam axle - Wikipedia

    en.wikipedia.org/wiki/Beam_axle

    Camber angle is rigidly fixed by axle geometry; for a live axle, toe is typically fixed as well. As the vehicle's body rolls during hard cornering, the unchanging camber yields predictable handling—at least on smooth surfaces. Wheel alignment is simplified. Traction, braking and tire wear characteristics do not change as the suspension is ...

  9. Glossary of automotive terms - Wikipedia

    en.wikipedia.org/wiki/Glossary_of_automotive_terms

    The angle between the plane defined by the circumference of the wheels and the vertical axis of the body or chassis of a vehicle, as viewed from the front or rear of the vehicle. If the top of the wheel is tilted outward, away from the body, the wheel is said to have positive camber ; if the top is tilted inward, towards the body, it is said to ...

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