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Finite Element Analysis and Optimal Design of Commercial Vehicle Drive Axle Housing

机译:商用车驱动轴外壳的有限元分析与最优设计

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In order to solve the heavy mass problem of the commercial vehicle drive axle housing, the structure of axle housing is optimized with finite element method. At first, the parametric finite element model of axle housing is built by using ANSYS software, and the dynamic response characteristics of axle housing are obtained with transient dynamics analysis. The dynamic analysis results show that strength and stiffness of axle housing can satisfy design criteria very well. Then the fatigue life of axle housing are predicted based on the dynamics analysis, and results show that the fatigue dangerous regions occur on the spring seats. Finally, the structure optimization of axle housing is done aimed at lightweight with goal drive optimization method, and the fatigue life of optimized axle housing are verified with FEA and bench test. The results of verification by both FEA and test show that the optimized axle housing has apparent lightweight effects with its fatigue life meeting design requirements.
机译:为了解决商用车驱动轴壳体的重质量问题,轴壳的结构用有限元方法进行了优化。首先,通过使用ANSYS软件构建轴壳的参数有限元模型,并且通过瞬态动力学分析获得轴壳的动态响应特性。动态分析结果表明,轴外壳的强度和刚度非常好,可以满足设计标准。然后基于动力学分析预测轴壳的疲劳寿命,结果表明疲劳危险区域发生在弹簧座上。最后,轴壳的结构优化是针对重量轻的目标驱动优化方法,并且使用FEA和台式测试来验证优化的轴外壳的疲劳寿命。 FEA和测试验证结果表明,优化的轴外壳具有明显的轻量级效果,其疲劳寿命会满足设计要求。

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