School of Mechanical and Automotive Engineering, 66323Shanghai University of Engineering Science, Shanghai, China.
Sci Prog. 2022 Apr-Jun;105(2):368504221102742. doi: 10.1177/00368504221102742.
As one of the essential components of the braking system, the high-speed train brake disc is an integral part of ensuring the safety of the train. The main objective of this study is to conduct thermal analysis and reliable life prediction on brake discs. The research was conducted by developing a programmer spectrum of brake discs with high-speed train brake discs. According to the results of numerical analysis and the S-N curve of the material, the temperature distribution on the surface of the brake disc is determined, and the fatigue life of the brake disc is predicted. The comparison with the service life of the brake disc verifies the rationality of the calculation results. In addition, a fatigue damage probability model of brake discs is established based on the theory of fatigue cumulative damage. Through the relationship between the reliability of mechanical parts and the number of load cycles, the reliable life of the brake disc under different working conditions is predicted. This work establishes a method of reliable life analysis for brake discs of high-speed trains based on the load spectrum, which could analyze the life and reliability of brake discs more systematically.
作为制动系统的重要组成部分之一,高速列车制动盘是确保列车安全的一个不可或缺的部分。本研究的主要目的是对制动盘进行热分析和可靠寿命预测。研究通过开发具有高速列车制动盘的程控谱来进行。根据数值分析的结果和材料的 S-N 曲线,确定了制动盘表面的温度分布,并预测了制动盘的疲劳寿命。与制动盘的使用寿命进行比较,验证了计算结果的合理性。此外,还基于疲劳累积损伤理论建立了制动盘的疲劳损伤概率模型。通过机械零件可靠性与载荷循环次数之间的关系,预测了不同工作条件下制动盘的可靠寿命。这项工作基于载荷谱为高速列车的制动盘建立了可靠寿命分析方法,可以更系统地分析制动盘的寿命和可靠性。