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Friction and Wear Mechanism Analysis of Polymer Flexible Cable Using a High Natural Frequency Piezoelectric Sensor

机译:高分子压电电缆高频固有压电传感器的摩擦磨损机理分析

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摘要

The friction and wear of flexible cables are the main factors that cause electrical breakdown and insulation aging, and they greatly reduce the reliability and safety of robots. In order to enhance the reliability and safety of the robot, it is of great necessity to investigate the friction and wear mechanisms of the flexible cable. In this research, the friction and wear mechanisms have been discussed. The effects of relative speed, ambient temperature, and positive pressure on the flexible cables are considered by an orthogonal frictional movement. The cable friction force has been measured by a piezoelectric sensor with high natural frequency characteristics. The relations among friction and different factors affecting friction have also been discussed. The results show that the relative speed and the ambient temperature are the main factors affecting the friction and wear of the cable; the main form of flexible cable wear is mechanical-force chemical friction and wear. Those discoveries will greatly deepen the understanding of the friction and wear mechanisms of flexible cables, and will be beneficial to robot cable-reliability design.
机译:柔性电缆的摩擦和磨损是导致电气故障和绝缘老化的主要因素,它们大大降低了机器人的可靠性和安全性。为了提高机器人的可靠性和安全性,非常有必要研究柔性电缆的摩擦和磨损机理。在这项研究中,已经讨论了摩擦和磨损机理。通过正交摩擦运动来考虑相对速度,环境温度和正压力对柔性电缆的影响。电缆摩擦力已经通过具有高固有频率特性的压电传感器进行了测量。还讨论了摩擦与影响摩擦的不同因素之间的关系。结果表明,相对速度和环境温度是影响电缆摩擦磨损的主要因素。柔性电缆磨损的主要形式是机械力化学摩擦和磨损。这些发现将大大加深对柔性电缆的摩擦和磨损机理的了解,并将有助于机器人电缆的可靠性设计。

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