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A new method based on adaptive volume constraint and stress penalty for stress-constrained topology optimization

机译:一种基于自适应体积约束和应力限制拓扑优化应力损失的新方法

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摘要

This paper focuses on the stress-constrained topology optimization of minimizing the structural volume and compliance. A new method based on adaptive volume constraint and stress penalty is proposed. According to this method, the stress-constrained volume and compliance minimization topology optimization problem is transformed into two simple and related problems: a stress-penalty-based compliance minimization problem and a volume-decision problem. In the former problem, stress penalty is conducted and used to control the local stress level of the structure. To solve this problem, the parametric level set method with the compactly supported radial basis functions is adopted. Meanwhile, an adaptive adjusting scheme of the stress penalty factor is used to improve the control of the local stress level. To solve the volume-decision problem, a combination scheme of the interval search and local search is proposed. Numerical examples are used to test the proposed method. Results show the lightweight design, which meets the stress constraint and whose compliance is simultaneously optimized, can be obtained by the proposed method.
机译:本文重点介绍了最小化结构体积和依从性的压力受限的拓扑优化。提出了一种基于自适应体积约束和压力惩罚的新方法。根据该方法,应力受限的体积和顺从最小化拓扑优化问题转变为两个简单相关问题:基于应力惩罚的合规性最小化问题和一个音量决策问题。在前一种问题中,进行压力惩罚并用于控制结构的局部应力水平。为了解决这个问题,采用了具有紧凑支持的径向基函数的参数水平集方法。同时,应力惩罚因子的自适应调整方案用于改善局部应力水平的控制。为了解决体积决策问题,提出了间隔搜索和本地搜索的组合方案。数值例子用于测试所提出的方法。结果表明,符合应力约束的轻质设计,其合规性同时优化,可以通过所提出的方法获得。

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