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首页> 外文期刊>Journal of Tribology >Stress Analysis of Thermal Fatigue Fracture of Brake Disks Based on Thermomechanical Coupling
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Stress Analysis of Thermal Fatigue Fracture of Brake Disks Based on Thermomechanical Coupling

机译:基于热力耦合的制动盘热疲劳断裂应力分析

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摘要

This paper develops a three-dimensional (3D) thermal-structure coupling model, implements transient stress analysis of thermoelastic contact of disk brakes with a frictional heat variation and identifies the source of the thermal fatigue. This thermostructure model allows the analysis of the effects of the moving heat source (the pad) with a variable speed and integrates the heat flux coupling between the sliding surfaces. To obtain the transient stress/temperature fields of the brake under an emergency braking, the thermoelastic problem under this 3D model is solved by the finite element method. The numerical results from the analysis and simulation show the temperature/stress of the disk presenting periodic sharp fluctuation due to the continuous cyclic loading; its varying frequency corresponds to the rotated cycle times of the braking disk. The results demonstrate that the maximum surface equivalent stress may exceed the material yield strength during an emergency braking, which may cause a plastic damage accumulation in a brake disk, while a residual tensile hoop stress is incurred on cooling. These results are validated by experimental observation results available in the literature. Based on these numerical results, some suggestions for avoiding fatigue fracture propagation are further presented.
机译:本文建立了三维(3D)热结构耦合模型,对具有摩擦热变化的盘式制动器的热弹性接触进行瞬态应力分析,并确定了热疲劳的来源。该热结构模型允许以可变速度分析移动的热源(垫)的作用,并整合滑动表面之间的热通量耦合。为了获得紧急制动下制动器的瞬态应力/温度场,通过有限元方法解决了此3D模型下的热弹性问题。分析和模拟的数值结果表明,由于连续的周期性载荷,圆盘的温度/应力呈现出周期性的急剧波动。其变化的频率对应于制动盘的旋转循环时间。结果表明,在紧急制动过程中,最大表面等效应力可能会超过材料的屈服强度,这可能会在制动盘中造成塑性损伤积累,而在冷却时会产生残余的张紧环向应力。这些结果通过文献中的实验观察结果得到了验证。基于这些数值结果,进一步提出了避免疲劳断裂扩展的一些建议。

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