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A method for optimal design of automotive body assembly using multi-material construction

机译:一种采用多材料结构的车身优化设计方法

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This paper proposes a new method for designing lightweight automotive body assemblies using multi-material construction with low cost penalty. Current constructions of automotive structures are based on single types of materials, e.g., steel or aluminium. The principle of the multi-material construction concept is that proper materials are selected for their intended functions. The design problem is formulated as a multi-objective nonlinear mathematical programming problem involving both discrete and continuous variables. The discrete variables are the material types and continuous variables are the thicknesses of the panels. This problem is then solved using a multi-objective genetic algorithm. An artificial neural network is employed to approximate the constraint functions and reduce the number of finite element runs. The proposed method is illustrated through a case study of lightweight design of an automotive door assembly.
机译:本文提出了一种使用多材料结构设计轻量级汽车车身组件的新方法,且成本低廉。当前的汽车结构结构是基于单一类型的材料,例如钢或铝。多材料构造概念的原理是,根据其预期功能选择合适的材料。设计问题被表述为涉及离散和连续变量的多目标非线性数学规划问题。离散变量是材料类型,连续变量是面板的厚度。然后使用多目标遗传算法解决该问题。采用人工神经网络来近似约束函数并减少有限元运行次数。通过对汽车门组件轻量化设计的案例研究来说明所提出的方法。

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