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Study on the design method of equal strength rim based on stress and fatigue analysis using finite element method:

机译:基于应力和疲劳有限元分析的等强度轮辋设计方法研究:

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Wheels are important safety components in the vehicle driving system. Automobile lightweight is the direction of the modern automobile development. In this article, steel wheel lightweight was studied. The equal strength design of rim was used to reduce the weight of the wheel. Stress analysis of the wheel was studied using UG/Nastran. A professional software WheelStrength was used to predict the radial and cornering fatigue lives of the wheel. Sheet stamping process was set up to analyze the interference fit between the disk and the rim. The assembly was simulated by axisymmetric finite element method. After calculation and analysis, the stress distributions and fatigue lives for rim under different load cases have been found. The thicknesses of wheel rim bead and the interface between rim and disk cannot be reduced. Stress and fatigue simulation results were compared using different thicknesses of the optimized region. It was found that the best thickness of the optimized region was 1.5?mm. Spinning was...
机译:车轮是车辆驱动系统中重要的安全组件。汽车轻量化是现代汽车发展的方向。在本文中,研究了钢轮轻量化。轮辋的等强度设计用于减轻车轮重量。使用UG / Nastran研究了车轮的应力分析。使用专业软件WheelStrength来预测车轮的径向和转弯疲劳寿命。设置了片材冲压工艺来分析圆盘和轮辋之间的过盈配合。通过轴对称有限元方法对组件进行了仿真。经过计算分析,得出了不同载荷工况下轮辋的应力分布和疲劳寿命。轮辋圈的厚度以及轮辋和盘之间的界面无法减小。使用优化区域的不同厚度比较了应力和疲劳模拟结果。发现最佳区域的最佳厚度是1.5μmm。纺纱是...

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