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Hinge-free topology optimization with embedded translation-invariant differentiable wavelet shrinkage

机译:嵌入式平移微分小波收缩的无铰链拓扑优化

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摘要

In topology optimization applications for the design of compliant mechanisms, the formation of hinges is typically encountered. Often such hinges are unphysical artifacts that appear due to the choice of discretization spaces for design and analysis. The objective of this work is to present a new method to find hinge-free designs using multiscale wavelet-based topology optimization formulation. The specific method developed in this work does not require refinement of the analysis model and it consists of a translation-invariant wavelet shrinkage method where a hinge-free condition is imposed in the multiscale design space. To imbed the shrinkage method implicitly in the optimization formulation and thus facilitate sensitivity analysis, the shrinkage method is made differentiable by means of differentiable versions of logical operators. The validity of the present method is confirmed by solving typical two-dimensional compliant mechanism design problems.
机译:在用于顺应性机构设计的拓扑优化应用中,通常会遇到铰链的形成。通常,此类铰链是由于选择离散化空间进行设计和分析而出现的非物理伪影。这项工作的目的是提出一种使用基于多尺度小波的拓扑优化公式来查找无铰链设计的新方法。在这项工作中开发的特定方法不需要完善分析模型,它由平移不变的小波收缩方法组成,其中在多尺度设计空间中施加了无铰链条件。为了将收缩方法隐式地嵌入到优化公式中,从而方便进行灵敏度分析,可以通过使用不同形式的逻辑运算符来使收缩方法具有可区分性。通过解决典型的二维柔性机构设计问题,证实了本方法的有效性。

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