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Initial Selection of Disc Brake Pads Material based on the Temperature Mode

机译:基于温度模式的盘式刹车片材料的初始选择

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摘要

A spatial computational model of a motor vehicle disc brake, based on the system of equations of heat dynamics of friction and wear (HDFW), was developed. The interrelations of temperature-dependent coefficient of friction and coefficient of intensity of wear through the contact temperature and vehicle velocity were taken into account. The solution of the system of equations of HDFW was obtained by the finite element method (FEM) for six different brake pad materials associated with the cast-iron disc during a single braking. Changes in the braking time, coefficient of friction, braking torque, vehicle velocity, mean temperature of the contact area of the pads with the disc and wear of the friction surfaces were determined. Then, the obtained calculation results were evaluated in terms of stabilization of the coefficient of friction (braking torque), as well as minimization of the maximum temperature, wear, braking time and pads mass. As a result, recommendations were given to select optimum brake pad material in combination with a cast-iron disc.
机译:基于摩擦磨损热力学方程组(HDFW),开发了一种汽车盘式制动器的空间计算模型。考虑了与温度有关的摩擦系数与通过接触温度和车速产生的磨损强度之间的相互关系。 HDFW方程组的解法是通过有限元方法(FEM)在单次制动期间针对与铸铁盘相关的六种不同的制动衬块材料获得的。确定制动时间,摩擦系数,制动扭矩,车辆速度,制动衬块与制动盘接触区域的平均温度以及摩擦表面的磨损的变化。然后,根据稳定的摩擦系数(制动扭矩)以及最大温度,磨损,制动时间和制动衬块质量的最小化来评估获得的计算结果。因此,建议结合铸铁盘选择最佳的制动衬块材料。

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