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Topology optimization of 2.5D parts using the SIMP method with a variable thickness approach

机译:使用SIMP方法和可变厚度方法对2.5D零件进行拓扑优化

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In this study, the Solid Isotropic Material with Penalization (SIMP) topology optimization method is employed on the artifacts via keeping the penalization factor as unity. When the penalization is not carried out, the finite elements of the artifact have intermediate material densities. These density values are then used as the thicknesses of the corresponding finite elements and conformal surfaces are formed utilizing these heights in the proposed method. We evaluated the performance of the method with the conventional SIMP method, having penalization factors larger than one, in terms of numerical analysis and experiments. The results revealed that the proposed approach outperforms the classical SIMP method.
机译:在这项研究中,通过将罚因子保持为统一,对工件采用了带有罚分的固体各向同性材料(SIMP)拓扑优化方法。当不执行惩罚时,伪影的有限元具有中间的材料密度。然后,将这些密度值用作相应有限元的厚度,并在建议的方法中利用这些高度形成共形表面。在数值分析和实验方面,我们用罚分因子大于1的常规SIMP方法评估了该方法的性能。结果表明,所提出的方法优于经典的SIMP方法。

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