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The Temperature Mode of the Carbon-Carbon Multi-Disc Brake in the View of the Interrelations of Its Operating Characteristics

机译:碳 - 碳多盘制动器的温度模式在其操作特性的相互关系的视野中

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摘要

In this paper, a methodology for conducting a computer simulation of the frictional heating process of a multi-disc braking system is proposed. The single braking of a system of three identical discs made of carbon–carbon (C/C) carbon frictional composite material (CFCM) is considered. In order to determine the operational characteristics of the brake, a heat dynamics of friction (HDF) system of equations is formulated, which takes into account the contact pressure rise time, thermal sensitivity of the C/C material, the change in the coefficient of friction during braking, the parameters of the friction surface’s microgeometry and the mutual influence of sliding velocity and temperature. A numerical solution using the finite element method (FEM) of the HDF system of equations allows us to determine changes in key braking process characteristics, such as work done, braking torque, friction coefficient, heat transfer coefficient, velocity and temperature. Finally, a comparative analysis of the results obtained for three different time profiles of the coefficient of friction is carried out.
机译:在本文中,提出了一种用于进行多盘制动系统的摩擦加热过程的计算机模拟的方法。考虑由碳 - 碳(C / C)碳摩擦复合材料(CFCM)制成的三个相同盘系统的单个制动。为了确定制动器的操作特性,配制了摩擦(HDF)系统的热动力学,考虑了C / C材料的热敏性,C / C材料的热敏性,系数的变化制动过程中的摩擦,摩擦表面的微量曲线的参数和滑动速度和温度的相互影响。使用HDF方程系统的有限元方法(FEM)的数值解决方案允许我们确定关键制动过程特性的变化,例如工作完成,制动扭矩,摩擦系数,传热系数,速度和温度。最后,进行了对三种不同时间谱的结果的比较分析进行了摩擦系数的曲线。

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