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Research and Optimization on Thermal Performance of Brake Disc for Ultra Deep Mine Hoist

机译:超深矿升降机刹车盘热性能的研究与优化

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When subjected to cyclic frictional thermal load during the emergency braking process, the brake disc of ultra-deep mine hoist generates a lot of heat, and the high temperature can decrease the brake pad's performance and even cause brake disc failure. Based on the heat conduction theory and the finite element analytic method, the3-dimentional brake disc and brake pads finite element model was built. Aiming at the thermal performance problem of brake disc, the temperature distribution under braking condition was studied for various numbers and arrangements of brake pads. The results indicate that, the temperature of friction surface rise sharply, and then drop slowly during the braking stage, and the temperature has serrated fluctuations. The max temperature of original brake disc model during the braking process is 106.1°C. Through optimization of the arrangement of brake pads, the max temperature of brake disc is 69.2°C, which is lower than that of the model increases the number of brake pads, and the distribution of temperature is more even.
机译:当在紧急制动过程中进行循环摩擦热负荷时,超深矿井葫芦的制动盘产生大量热量,并且高温可以降低制动垫的性能甚至导致制动盘故障。基于导热理论和有限元分析方法,构建了3维制动盘和制动垫有限元模型。针对制动盘的热性能问题,研究了制动条件下的温度分布,用于制动垫的各种数量和布置。结果表明,摩擦表面的温度急剧上升,然后在制动阶段缓慢下降,温度具有锯齿状波动。制动过程中原始制动盘模型的最大温度为106.1°C。通过优化制动衬块的布置,制动盘的最大温度为69.2°C,其低于模型的增加,增加了制动衬块的数量,并且温度的分布更均匀。

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