基于数值模拟的大型压铸机拓扑优化设计

Zhan Hua-wei, Xiaoxin Wei, Zheng Zhen-xing, Zhi-heng Wu
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引用次数: 1

摘要

在大型压铸机的设计中,引入了拓扑优化方法。结合实际工程应用,用密度法构造了具有惩罚的固体各向同性微结构(SIMP)插值函数,推导了拓扑优化数值解的优化准则算法。利用Hyperworks软件对压铸机的模台进行拓扑优化设计,得到了更合理的材料分布。与传统设计结果相比,模台最大应力由205 MPa降至47.3 MPa,质量由23.6T降至19.12T,最大位移由0.29mm降至0.245mm,产品技术指标满意。实现了结构轻量化的目标,得到了适合工程应用的优化模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Topology Optimization for the Design of Large Die Casting Machine Based on Numerical Simulation
During the design of the large die casting machine, the topology optimization is introduced. Combined with the factual engineering application, the interpolation function of solid isotropic microstructures with penalization (SIMP) is constructed in the density method and the optimization criteria algorithm is deduced for the numerical solution of topology optimization. In virtue of the Hyperworks code, the mould platen of die casting machine is used for topology optimization design and the more reasonable distribution of material is obtained. Compared to the result of the traditional design, the stress maximum of the mould platens is cut down from 205 MPa to 47.3 MPa, the mass is changed from 23.6T to 19.12T and the maximum of the displacement is decreased from 0.29mm to 0.245mm and the product technology index is satisfied. The objective of lightweight structure is achieved and the optimization model suitable for engineering applications has been obtained.
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