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首页> 外文期刊>International Journal for Numerical Methods in Engineering >Multiphase topology optimization with a single variable using the phase-field design method
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Multiphase topology optimization with a single variable using the phase-field design method

机译:使用相位场设计方法使用单个变量进行多相拓扑优化

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摘要

In this study, a multimaterial topology optimization method using a single variable is proposed by combining the solid isotropic material with penalization method and the reaction-diffusion equation. Unlike ordinary multimaterial optimization, which requires several variables depending on the number of material types, this method intends to represent various materials as one variable. The proposed method combines two special functions in the sensitivity analysis of the objective function to converge the design variable into prespecified density values defined for each of the multimaterials. The composition constraint based on a normal distribution function is also introduced to estimate the distribution of each target density value in a single variable. It enables density exchange between multiple materials by increasing or decreasing the amount of a specific material. The proposed method is applied to structural and electromagnetic problems to verify its effectiveness, and its usefulness is also confirmed from the viewpoint of cost and computation time.
机译:在该研究中,通过将固体各向同性材料与惩罚方法和反应扩散方程组合来提出使用单个变量的多国拓扑优化方法。与普通多维优化不同,这取决于材料类型的数量,该方法旨在将各种材料代表为一个变量。所提出的方法将两个特殊功能组合在目标函数的灵敏度分析中,将设计变量与每个多国定义的预先定义的密度值进行会聚到预定的密度值。还引入了基于正常分布函数的构图约束来估计单个变量中每个目标密度值的分布。它通过增加或减少特定材料的量,使多种材料之间的密度交换能够。所提出的方法应用于结构和电磁问题以验证其有效性,并且从成本和计算时间的观点来看也证实了其有效性。

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