基于多目标的轻型框架拓扑优化方法

R. Lyu, Hai Liu, D. Ju
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引用次数: 0

摘要

新材料的应用是汽车轻量化的重要方向。在保证零部件综合性能的基础上,通过拓扑优化方法对新材料结构进行优化,可进一步提高零部件轻量化水平。本文以汽车车架为研究对象,以镁合金为基础,以质量和强度为目标函数,研究多工况下车架拓扑结构,通过多目标拓扑优化方法实现汽车车架结构的轻量化。根据固体各向同性材料罚函数拓扑优化方法,采用折衷规划方法确定了多工况下质量拓扑优化目标函数和强度拓扑优化目标函数。该方法避免了单目标拓扑优化不能考虑其他因素的缺点,适用于连续体结构的多目标拓扑优化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lightweight Frame Topology Optimization Method Based on Multi-objective
The application of new materials is an important direction for automotive lightweighting. On the basis of ensuring the comprehensive performance of components, the optimization of new material structures through topology optimization methods can further improve the level of lightweight components. This paper takes the automobile frame as the research object, based on the magnesium alloy, studies the frame topology with the objective function of mass and strength under multiple working conditions, and realizes the lightweight of the automobile frame structure through the multi-objective topology optimization method. According to the topological optimization method of penalty function for solid isotropic materials, the objective function of the quality topology optimization and the objective function of intensity topology optimization under multi-operating conditions are defined by the compromised programming approach. This method avoids the disadvantage that single-target topology optimization cannot consider other factors and is suitable for multi-objective topology optimization of continuum structures.
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