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Fatigue life analysis of wheels on guideway vehicle using multibody dynamics

机译:基于多体动力学的导轨车辆车轮疲劳寿命分析

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A guideway vehicle is used in automobile, semiconductor and LCD manufacturing industries to transport products efficiently. Since the operating speed of the guideway vehicle should be increased for maximum productivity, the weight of the vehicle has to be reduced, and this weight reduction may cause a failure of a part in the system. Therefore, the estimation of the fatigue life of the parts becomes an important problem. In this study, the fatigue life of the wheels in the guideway vehicle is estimated using an S-N curve. To obtain the fatigue life of a part, the S-N curve, the dynamic stress time history applied to the part, and the material property of the part are required. The S-N curve of the driving wheel is obtained from the fatigue experiment on wheels. To obtain the material properties of the driving wheel, which is composed of aluminum with urethane coating, the result of a compression hardware test and static analysis of the wheel’s FE model are used. The dynamic stress time history influencing the driving wheel can be obtained from linear superposition of the dynamic load time history and the static stress. The dynamic load time history is estimated by multibody dynamic analysis, and the static stress is obtained by finite element analysis.
机译:导轨车辆用于汽车,半导体和LCD制造行业,以有效地运输产品。由于应该提高导轨车辆的运行速度以实现最大生产率,因此必须减轻车辆的重量,并且这种重量的减轻可能导致系统中的零件发生故障。因此,估计零件的疲劳寿命成为重要的问题。在这项研究中,使用S-N曲线估算了导轨车辆中车轮的疲劳寿命。为了获得零件的疲劳寿命,需要S-N曲线,施加到零件上的动态应力时间历史以及零件的​​材料特性。主动轮的S-N曲线是通过轮毂的疲劳实验获得的。为了获得由铝和氨基甲酸酯涂层组成的主动轮的材料性能,使用了压缩硬件测试的结果以及对车轮的FE模型的静态分析。可以通过动载荷时间历史和静应力的线性叠加来获得影响驱动轮的动应力时间历史。通过多体动力学分析来估计动载荷的时间历史,并通过有限元分析来获得静应力。

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