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Brake Judder - An Investigation of the Thermo-elastic and Thermo-plastic Effects during Braking

机译:刹车颤抖-刹车过程中的热弹性和热塑性影响的研究

摘要

This paper considers a study of the thermo-elastic behaviour of a disc brake during heavy braking. The work is concerned with working towards developing design advice that provides uniform heating of the disc, and equally important, even dissipation of heat from the disc blade. The material presented emanates from a combination of modeling, on-vehicle testing but mainly laboratory observations and subsequent investigations. The experimental work makes use of a purpose built high speed brake dynamometer which incorporates the full vehicle suspension for controlled simulation of the brake and vehicle operating conditions. Advanced instrumentation allows dynamic measurement of brake pressure fluctuations, disc surface temperature and discrete vibration measurements. Disc run-out measurements using non-contacting displacement transducers show the disc taking up varying orders of deformation ranging from first to third order during high speed testing. This surface interrogation during braking identifies disc deformation including disc warping, 'ripple' and the effects of 'hot spotting'. The mechanical measurements are complemented by thermal imaging of the brake, these images showing the vane and vent patterns on the surface of the disc. The results also include static surface scanning, or geometry analysis, of the disc which is carried out at appropriate stages during testing. The work includes stress relieving of finished discs and subsequent dynamometer testing. This identifies that in-service stress relieving, due to high heat input during braking, is a strong possibility for the cause of disc 'warping'. It is also seen that an elastic wave is established during a braking event, the wave disappearing on release of the brake.
机译:本文考虑了在严重制动过程中盘式制动器的热弹性行为的研究。这项工作与制定设计建议有关,该建议提供了对光盘的均匀加热,并且同样重要的是均匀地耗散了光盘刀片的热量。呈现的材料来自建模,车载测试的结合,但主要来自实验室观察和后续研究。实验工作使用了专用的高速刹车测功机,该测功机结合了完整的车辆悬架,可对刹车和车辆工况进行受控模拟。先进的仪器可以动态测量制动压力波动,制动盘表面温度和离散振动。使用非接触式位移传感器的光盘跳动测量表明,在高速测试期间,光盘承受的变形阶次从一阶到三阶不等。制动过程中的这种表面询问可以识别出碟片变形,包括碟片翘曲,“波纹”和“热点”的影响。制动器的热成像补充了机械测量结果,这些图像显示了磁盘表面上的叶片和排气孔图案。结果还包括在测试过程中的适当阶段执行的磁盘的静态表面扫描或几何分析。这项工作包括消除成品圆盘的应力和随后的测功机测试。这表明,由于制动过程中大量热量输入而导致的在役应力消除很可能是导致制动盘“翘曲”的原因。还可以看到,在制动过程中建立了弹性波,该弹性波在释放制动器时消失。

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