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首页> 外文期刊>Tribology International >Improving the performance of ultrasonic motors in low-pressure, variable-temperature environments
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Improving the performance of ultrasonic motors in low-pressure, variable-temperature environments

机译:提高低压,可变温度环境中超声波电动机的性能

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摘要

Ultrasonic motor (USM) performance is dependent on the tribological characteristics of the interface between a stator and rotor, which are sensitive to ambient environments and driving parameters. Thus, the effects of vacuum and temperature on the mechanical output performance and energy conversion efficiency of a traveling wave rotary ultrasonic motor 60 (TRUM-60) with a novel micro-dimpled PI-based friction material and optimized input parameters were systematically investigated for the first time. The degree of vacuum had a negligible effect on the performance of the TRUM-60, whereas temperature influenced its mechanical output torque, rotational speed, and output power. The results can aid in the design of USM devices for aerospace applications.
机译:超声波电机(USM)的性能取决于定子和转子之间接口的摩擦学特性,该特性对周围环境和驱动参数非常敏感。因此,首次系统研究了真空度和温度对新型微凹坑PI基摩擦材料和优化输入参数的行波旋转超声马达60(TRUM-60)的机械输出性能和能量转换效率的影响。真空度对TRUM-60的性能影响可以忽略不计,而温度影响其机械输出扭矩、转速和输出功率。研究结果有助于航空航天用USM器件的设计。

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