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Effects of vibrations on friction and wear of automobile disc brake pads and electric motor carbon brushes.

机译:振动对汽车盘式刹车片和电动机碳刷的摩擦和磨损的影响。

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摘要

This dissertation explores the effects of vibrations on friction and wear of carbon brushes in electric motors and brake pads in automobile disc brakes. Micro-vibrations generated by a piezoelectric actuator, when applied to a carbon brush such that the brush vibrated in a rocking mode, reduced brush wear, compared to the case without vibrations applied. When the applied vibrations were near the system natural frequency, much more wear reduction was achieved. The wear reduction mechanism may involve the rocking vibrations transferring the real contact spots between the brush and the rotor to new locations within the apparent are of contact, before thermal mounds evolved; it also may have opened gaps between the brush and the rotor so that abrasive wear particles could escape, consequently avoiding thermal mounds and abrasive wear. Passive vibrations induced by surface waviness inscribed on a wavy disc rotor in an automobile disc brake system increased friction force, compared to the case with a smooth rotor with very little surface waviness; while the friction force increased, pad wear was maintained at the same level. The temperature of the wavy rotor was lower than that of the smooth rotor. These effects may be due to rocking vibrations of the pad preventing thermal mounds, and increased heat transfer from the rotor to the air. In addition, it is believed that brake fade, a phenomena wherein brake forces in friction brakes “fade” or reduce due to high temperature, occurred to the smooth rotor system. Measured wear results differ considerably from laboratory to laboratory, and within a given laboratory, from test to test, even with the same material pairs and the same experimental conditions. Vibration characteristics appear to be one of the main causes of variability of the wear results. This is shown through analysis of brush wear data with different experimental conditions.
机译:本文探讨了振动对电动机碳刷和汽车盘式制动器制动片的摩擦磨损的影响。与不施加振动的情况相比,当将压电致动器产生的微振动施加到碳刷上时,使碳刷以摇摆模式振动,从而减少了电刷的磨损。当施加的振动接近系统固有频率时,可以实现更多的磨损减少。减少磨损的机制可能涉及摇摆振动,这些振动将电刷和转子之间的实际接触点转移到表观接触区内的新位置上,然后再形成热丘。它还可能在电刷和转子之间形成间隙,从而使磨蚀性颗粒逸出,从而避免了热堆和磨蚀性磨损。与具有很少表面波纹的光滑转子相比,在汽车盘式制动系统中,由波浪波纹盘上的表面波纹引起的被动振动增加了摩擦力。当摩擦力增加时,垫的磨损保持在相同水平。波浪形转子的温度低于光滑转子的温度。这些影响可能是由于轴瓦的摇摆振动阻止了热堆,以及从转子到空气的热传递增加。另外,据信,制动器的衰减是由于平滑的转子系统而发生的,即摩擦制动器的制动力由于高温而“衰减”或降低的现象。即使在相同的材料对和相同的实验条件下,不同实验室之间以及在给定实验室中,每次测试所测得的磨损结果也存在很大差异。振动特性似乎是磨损结果变化的主要原因之一。通过分析不同实验条件下的电刷磨损数据可以看出这一点。

著录项

  • 作者

    Lee, Sangbok.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Engineering Mechanical.; Engineering Automotive.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 113 p.
  • 总页数 113
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;自动化技术及设备;
  • 关键词

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