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超声马达转子摩擦材料厚度对驱动性能的影响研究
引用本文:曲建俊 齐毓霖 等. 超声马达转子摩擦材料厚度对驱动性能的影响研究[J]. 摩擦学学报, 2002, 22(2): 134-137
作者姓名:曲建俊 齐毓霖 等
作者单位:1. 清华大学,物理系,北京,100084;哈尔滨工业大学,机械工程系,黑龙江,哈尔滨,150001
2. 清华大学,物理系,北京,100084
3. 哈尔滨工业大学,机械工程系,黑龙江,哈尔滨,150001
基金项目:国家自然科学基金资助项目 (198740 3 9)
摘    要:制备了一系列不同厚度的摩擦材料 ,利用超声马达摩擦特性模拟试验装置 ,研究了摩擦材料厚度对超声马达空载转速和堵转力矩的影响 .基于一个简化的行波超声马达定子和转子接触模型 ,用有限元法计算了定子和转子接触变形随摩擦材料厚度的变化规律 ,提出了定子和转子具有合理接触变形的摩擦材料厚度范围 .根据试验和理论计算结果确定了摩擦材料最佳厚度 ,为超声马达摩擦材料厚度设计提供了理论依据

关 键 词:超声马达  接触  摩擦材料  厚度
文章编号:1004-0595(2002)02-0134-04
修稿时间:2001-09-07

Effect of Thickness of Rotor Friction Material on the Performance of Ultrasonic Motor
QU Jian jun,ZHOU Tie ying,QI Yu lin,ZHANG Zhi qian. Effect of Thickness of Rotor Friction Material on the Performance of Ultrasonic Motor[J]. Tribology, 2002, 22(2): 134-137
Authors:QU Jian jun  ZHOU Tie ying  QI Yu lin  ZHANG Zhi qian
Abstract:A series of friction materials with different thickness for traveling wave ultrasonic motor (TWUSM) were developed. The effects of the thickness of the friction material on the un load speed and stalling torque of TWUSM were investigated with a simulated tester of TWUSM.A simple contact model with friction between the stator and rotor of a TWUSM was established. The variations of the contact state between the stator and rotor with the thickness of the friction material were simulated numerically using finite element method based on the contact model. The range of thickness of friction material with suitable contact deformation between the stator and the rotor was presented. It has been found that the optimum thickness of the friction material for TWUSM can be determined conveniently based on the method established, by taking into account the requirement for suitable contact deformation of the stator and rotor. Appropriate out put performance of the ultrasonic motor is attainable at a thickness of 0.3 mm of the friction material, while un stability and processing difficulty are caused when the thickness of the friction material is too small.
Keywords:ultrasonic motor  contact  friction material  thickness  performance
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