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Temperature Field and Thermal Stress Analyses of High-Speed TrainBrake Disc Under Pad Variations

机译:垫块变化下高速列车制动盘的温度场和热应力分析

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Transient heat transfer analysis of disc brake has been performed to find out an ideal shape of pad geometry.The analysis has taken frictional heat between brake disc and pads as heat flux onto the friction surface, the disc and thepad's temperature fields then were explored involving thermal conduction, forced convection and surface radiation effects.The disc thermal expansion stress was then acquired by quasi-static analysis using its temperature of aforesaid heattransfer analysis. Five prototypes of pad designs with geometry and volume variations were implemented for analyticalcomparison. Both pads and disc are required to have lower and uniform temperature field and thermal stress. The resultsuncover that heat conduction is domination in heat dissipation progress during braking, and big volume pad is cooler. Padvolume has more impact to heat transfer procedure and temperature gradient than pad geometry variation does. The designhas 10 triangle pads is considered to be an ideal candidate. Its maximum disc temperature and thermal stress are the leastamong the five designs.
机译:进行了盘式制动器的瞬态传热分析,以找到理想的制动衬块形状。该分析将制动盘和制动衬块之间的摩擦热作为热通量传递到摩擦表面上,然后研究了制动盘和制动衬块的温度场然后,利用上述传热分析的温度,通过准静态分析获得了圆盘的热膨胀应力。实施了五个具有几何形状和体积变化的焊盘设计原型,以进行分析比较。要求垫和盘都具有较低且均匀的温度场和热应力。结果发现,导热是制动过程中散热过程的主导,而大体积的制动垫则较冷。垫体积比垫几何形状变化对传热过程和温度梯度的影响更大。该设计具有10个三角形焊盘,被认为是理想的选择。在这五种设计中,其最高的光盘温度和热应力是最小的。

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