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Using Finite Element Analysis to Predict the Brake Pressure Needed for Effective Rotor Cleaning in Disc Brakes

机译:使用有限元分析来预测圆盘制动器中有效转子清洁所需的制动压力

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This paper presents an approach to simulating wear on both contact surfaces at the pad-to-rotor interface in disc brakes using general-purpose finite element software. It represents a first step toward a method of simulating the brake pressure needed to effectively clean the rotor of unwanted oxide layers. Two simulation cases are presented. The first addresses running-in wear under constant load and corresponds to repeated brake applications at the same constant brake load. The second studies what will happen if a lower load is applied after the contact surfaces have been run-in at a higher load level. This lower load is applied to wear off an oxide layer after a sequence of repeated stop braking at higher load levels.
机译:本文采用通用有限元软件,介绍了圆盘制动器垫与转子界面的两个接触表面上的磨损方法。它表示朝向模拟有效清洁不需要的氧化物层的转子所需的制动压力的方法的第一步。提出了两个模拟案例。第一地址在恒定负载下磨损的磨损,并且对应于相同的恒定制动载荷的重复制动应用。第二种研究如果在较高的负载水平下施加较低的载荷后施加较低的负载,会发生什么。在较高载荷水平下的重复止动制动序列之后,施加该较低负载以磨损氧化物层。

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