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Multi-objective structure optimization design of a car lower control arm

机译:汽车较低控制臂的多目标结构优化设计

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A multi-objective structure optimization design of a car lower control arm was operated in order to improve both compliance and eigenfrequencies effectively. Based on SIMP (solid isotropic material penalization) method, compromise programming method was adopted to define multi-objective topology optimization. The topological structure of lower control arm was obtained through the optimization, and further, the new structure design. Results verified by FEA show that the new design can simultaneously satisfy the compliance and eigenfrequencies objective, and can meet yield stress requirements.
机译:运营汽车较低控制臂的多目标结构优化设计,以有效地提高遵守性和特征犯罪。基于SIMP(纯度各向同性物质惩罚)方法,采用了折衷规划方法来定义多目标拓扑优化。通过优化,进一步地获得较低控制臂的拓扑结构,进一步地实现了新的结构设计。结果由FEA验证表明,新设计可以同时满足遵守性和特征频率,并满足产量应力要求。

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