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Maximizing the fundamental eigenfrequency of geometrically nonlinear structures by topology optimization based on element connectivity parameterization

机译:通过基于单元连接性参数化的拓扑优化来最大化几何非线性结构的基本特征频率

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摘要

This paper pertains to the use of topology optimization based on the internal element connectivity parameterization (I-ECP) method for nonlinear dynamic problems. When standard density-based topology optimization methods are used for nonlinear dynamic problems, they typically suffer from two main numerical difficulties, element instability and localized vibration modes. As an alterative approach, the I-ECP method is employed to avoid element instability and a new patch mass model in the I-ECP formulation is developed to control the problem of localized vibration modes. After the I-ECP based formulation is developed, the advantages of the proposed method are checked with several numerical examples.
机译:本文涉及基于内部元素连接参数化(I-ECP)方法的拓扑优化在非线性动力学问题中的应用。当将基于标准密度的拓扑优化方法用于非线性动力学问题时,它们通常会遇到两个主要的数值困难:单元不稳定和局部振动模式。作为一种替代方法,采用I-ECP方法来避免元素不稳定,并开发了I-ECP公式中的新贴片质量模型来控制局部振动模式的问题。在开发了基于I-ECP的公式后,通过几个数值示例验证了所提出方法的优势。

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