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The Weld Life Prediction of Frame’s Damper Seat Based on Notch Stress Model

机译:基于陷波应力模型的框架阻尼座的焊缝寿命预测

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In order to analyze welded fatigue life of welded frame’s accessories correctly, this paper adopts fictitious notch method of 1mm radius and establishes a notch stress model for an A1A-A1A-type locomotive bogie’s primary vertical damper seat. Through FEM analysis, stress state at local weld toe and weld root for damper seat can be obtained. According to stress range, the danger points of welds can be confirmed. The full vehicle multi-body dynamic model is established for simulation analysis, for the sake of acquiring load-time history of vertical damper seat under track irregularity, which considering nonlinear damping speed character of vertical damper. Based on StressLife_Analysis module of nCode DesignLife, welded accumulative damage and life cycles under different stress parameters and fatigue class curves are calculated. Meanwhile, the corresponding nominal stress model is established to carry out analysis comparison. The result shows that in the same case, accumulative damage value calculated by a notch stress method is lower, life cycles is higher, and the normal stress method generally is partial to be conservative.
机译:为了正确分析焊接框架配件的焊接疲劳寿命,本文采用了1mm半径的虚拟陷波法,为A1A-A1A型机车转向架的主垂直阻尼座位建立了一个陷波应力模型。通过有限元分析,可以获得局部焊接脚趾的应力状态和阻尼座椅的焊接根。根据应力范围,可以确认焊缝的危险点。为获取轨道不规则性垂直阻尼座椅的负载时间历史来建立仿真分析的全车辆多体动态模型,这考虑了垂直阻尼器的非线性阻尼速度特性。基于Ncode DesignLife的ConrentLife_Analysis模块,计算了不同应力参数下的焊接累积损伤和寿命周期。同时,建立相应的标称应力模型以进行分析比较。结果表明,在相同的情况下,通过凹口应力法计算的累积损伤值较低,寿命周期较高,并且正常应力方法通常是保守的部分。

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