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TOPOLOGICALLY OPTIMIZED SHAPE OF CFRP FRONT LOWER CONTROL ARM

机译:拓扑优化的CFRP前下控制臂的形状

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摘要

This study shows topology optimization of lower control arm (LCA), made of carbon fiber reinforced plastic (CFRP), that was originally composed of aluminum alloy. By mean-field homogenization (MFH) method, averaged mechanical properties of CFRP are applied to FEM analyses of 3D LCA model. The design target is to reduce the LCA weight while satisfying the multiple constraints including required stiffness and durability conditions at the same time. As a result, authors propose the new design of CFRP LCA with 30 % weight reduction compared to Al alloy LCA.
机译:本研究示出了由碳纤维增强塑料(CFRP)制成的下控制臂(LCA)的拓扑优化,最初由铝合金组成。 通过平均场均质化(MFH)方法,CFRP的平均力学性能施加到3D LCA模型的FEM分析。 设计目标是降低LCA重量,同时满足包括所需刚度和耐久性条件的多个约束。 因此,作者提出了与Al合金LCA相比,减少了30%重量的CFRP LCA的新设计。

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