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Safety Life Analysis of High Speed Maglev Running Mechanism Parts Based on Strength Degradation

机译:基于强度退化的高速磁悬浮运行机构零件安全寿命分析

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The Shanghai high speed Maglev demonstration line has been in operation for 16 years and has entered the middle stage of design life. The tolerance capacity of external random collision damage is an important capability of mechanical parts of running mechanisms. The running mechanism of a Maglev system gradually produces fatigue damage under the condition of time history and cyclic load, which will reduce its ability of external random impact damage. Based on fatigue cumulative damage theory and fracture mechanics, the damage tolerance life of important parts of vehicles running mechanisms under degradation strength was studied. A stress-strength interference model under the degraded strength of important components was built, and the factors that affect the remaining life of a defective part under performance degradation was studied. The above research provided theoretical support for selecting the materials for the mechanical components of the running mechanism of Maglev system.
机译:上海高速磁悬浮示范线已经运行了16年,已经进入设计生命的中期阶段。外部随机碰撞损伤的承受能力是行走机构机械零件的重要能力。磁悬浮系统的运行机制会在时间历史和周期性载荷的条件下逐渐产生疲劳损伤,从而降低其外部随机冲击损伤的能力。基于疲劳累积损伤理论和断裂力学,研究了车辆行驶机构重要部件在退化强度下的损伤耐受寿命。建立了重要零部件强度下降下的应力-强度干涉模型,研究了性能下降下影响缺陷零件剩余寿命的因素。以上研究为磁悬浮系统运行机构机械部件的材料选择提供了理论依据。

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