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The layout and fatigue life analysis of welding spots for the cab body in white of a commercial vehicle

机译:商用车白色驾驶室焊接斑点的布局和疲劳寿命分析

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The finite element model with shell element for a commercial vehicle cab body in white is set up. In order to optimize the layout of welding spots, topology optimization with single objective is conducted first. After analysis of the optimization results, we get the conclusion that topology optimization with single objective can not meet various performance requirements of automotive body. Then the multi-area synthetic optimization method is used for the welding spots layout optimization. Considering the different influences of the cab components to the stiffness, strength and low modal frequency, the cab is divided into two different areas. Based on the stiffness and strength analysis results, the layout of welding spots in the area which has larger influence on the stiffness, strength and low modal frequency is adjusted. And topology optimization is applied in the other area for the layout optimization of welding spots. The synthetic optimization result is obtained by integrating optimization results of the two areas. The fatigue life of welding spots for the optimized and the original models are analyzed. The comparison of results indicates that the optimization methods used are rational and effective.
机译:设立了白色的商用车驾驶室主体的带壳元件的有限元模型。为了优化焊点的布局,首先进行单一目标的拓扑优化。在分析优化结果之后,我们得出结论,拓扑优化与单一目标无法满足汽车体的各种性能要求。然后,多区域合成优化方法用于焊接点布局优化。考虑到驾驶室部件对刚度,强度和低模频频率的不同影响,驾驶室分为两个不同的区域。基于刚度和强度分析结果,调整了对刚度,强度和低模态频率影响较大影响的区域中的焊接斑点的布局。并且拓扑优化应用于其他区域,以进行焊接点的布局优化。通过整合两个区域的优化结果来获得合成优化结果。分析了优化和原始模型的焊接斑点的疲劳寿命。结果的比较表明所使用的优化方法是合理的,有效的。

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