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Anti-vibration and traction control of rotary sliding systems by orthogonal rotation providing transverse sliding

机译:通过正交旋转提供横向滑动的旋转滑动系统的抗振和牵引控制

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摘要

Rotary sliding systems such as clutches require smooth motion without any unpredicted vibrations, such as friction-induced vibration. Friction-induced vibration, which is called judder in clutches, sometimes occurs, especially during clutch engagement. To suppress the friction-induced vibration in rotary sliding systems, a unique method in which the direction of the friction force is forcibly changed by orthogonal rotation of a roller providing transverse sliding is proposed. The effectiveness of the method was examined experimentally using a custom-built apparatus. The results show that the orthogonal rotation suppresses the friction-induced vibration even when the friction force exhibits velocity-weakening characteristics. In addition, the effective friction force, which can be regarded as the traction force, can be controlled by varying the orthogonal rotation.
机译:像离合器这样的旋转滑动系统需要平稳的运动,没有任何不可预测的振动,例如摩擦诱发的振动。摩擦引起的振动,在离合器中称为抖动,有时会发生,尤其是在离合器接合期间。为了抑制旋转滑动系统中的摩擦诱发振动,提出了一种独特的方法,通过提供横向滑动的滚子的正交旋转强制改变摩擦力的方向。使用定制设备对该方法的有效性进行了实验验证。结果表明,即使摩擦力表现出速度衰减特性,正交旋转也能抑制摩擦引起的振动。此外,可以通过改变正交旋转来控制有效摩擦力,即牵引力。

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