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Effect of Friction Layer Creep Deformation on Dynamic Behavior of Traveling Wave Rotary Ultrasonic Motor

机译:摩擦层蠕变变形对行波旋转超声波电动机动态行为的影响

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The contact mechanism of traveling wave rotary ultrasonic motor (TRUM) provides us with numerous advantages. Usually polymer friction material is bonded on the contact surface of the TRUM rotor, in order to obtain excellent mechanical characteristics, such as high efficiency, long life and so on. Unfortunately, the creep happens for the friction layer made of polymer material, due to the large pressure at the contact interface between the stator and rotor. In this paper the creep of the friction layer is taken into account at the contact interface, especially its effect on the startup characteristics of TRUM in long-term storage. Based on the contact model of TRUM the creep behavior of the friction layer is investigated at the contact interface between the stator and rotor. With the consideration of the friction layer creep, we tried to explain how the distributing contact forces applied on the interface affect the speed response characteristics of TRUM, as is shown in our experiments.
机译:行波旋转超声波电机(Trum)的接触机构为我们提供了许多优点。通常,聚合物摩擦材料粘合在拉ul转子的接触表面上,以获得优异的机械特性,例如高效率,长寿命等。不幸的是,由于定子和转子之间的接触界面处的大压力,蠕变发生蠕变。在本文中,在接触界面考虑摩擦层的蠕变,特别是其对长期存储中Trum的启动特性的影响。基于Trum的接触模型,在定子和转子之间的接触界面处研究了摩擦层的蠕变行为。考虑到摩擦层蠕变,我们试图解释应用于界面上的分配接触力如何影响Trum的速度响应特性,如我们实验中所示。

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