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The effect of friction reduction in presence of ultrasonic vibrations and its relevance to travelling wave ultrasonic motors

机译:存在超声振动时摩擦减小的影响及其与行波超声电机的相关性

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In many ultrasonic applications frictional effects play an important role (e.g. ultrasonic machining, ultrasonic motors). For optimising the applications in terms of quality, efficiency and lifetime it is important to understand the frictional coupling of the vibrating and the non-vibrating part. This contribution is devoted to give an explanation for the reduction of friction forces which is often observed when ultrasonic vibrations are superimposed to macroscopic motions. Usually adopted coefficients of friction are used for modelling such conditions suggesting special frictional mechanisms for high frequency oscillations, whereas the present paper shows that Coulomb's friction law provides a very good description of the observed phenomena if the kinematics of the system is taken into account. Two systems are investigated. In the first system the ultrasonic and macroscopic movements are parallel and in the second they are perpendicular to each other but also within the plane of contact. Both systems were investigated analytically and experimentally using a specially designed test rig. The measurements confirmed the analytically derived equations and therefore the validity of Coulomb's friction law even for ultrasonic conditions. (C) 2002 Published by Elsevier Science B.V. [References: 10]
机译:在许多超声应用中,摩擦效应起着重要作用(例如,超声加工,超声马达)。为了在质量,效率和寿命方面优化应用,重要的是要了解振动和非振动部件的摩擦耦合。该贡献致力于解释当超声波振动叠加到宏观运动时经常观察到的摩擦力的减小。通常采用的摩擦系数用于对这种情况进行建模,从而暗示了高频振荡的特殊摩擦机制,而本论文表明,如果考虑系统的运动学特性,则库仑的摩擦定律可以很好地描述观察到的现象。研究了两个系统。在第一个系统中,超声运动和宏观运动是平行的,而在第二个系统中,超声运动和宏观运动是相互垂直的,而且在接触平面内。使用专门设计的测试台对这两个系统进行了分析和实验研究。测量结果证实了解析得出的方程式,因此即使在超声条件下,库仑摩擦定律的有效性也得到了证实。 (C)2002由Elsevier Science B.V.出版[参考:10]

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