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Structural design for desired eigenfrequencies and mode shapes using topology optimization

机译:使用拓扑优化设计所需特征频率和振型的结构设计

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摘要

A technique is proposed for determining the material distribution of a structure to obtain desired eigenmode shapes for problems of maximizing the fundamental eigenfrequency. The design objective is achieved using the solid isotropic method with penalization (SIMP) for topology optimization. Weighted constraints added in bound formulation are proposed to maximize the fundamental natural frequency, which provides an easy and straightforward way to prevent mode switching in the optimization process. Aside from maximizing the fundamental frequency, a method to modify existing eigenmodes to continuously evolve and assume the same shapes as the desired modes within the optimization process is proposed. The topology layout of a structure with desired eigenmodes is obtained by adding the modal assurance criterion (MAC) as additional constraints in the bound formulation optimization. Examples are presented to illustrate the proposed method, and a potential application of the proposed technique in decoupling a mechanical system is demonstrated.
机译:提出了一种用于确定结构的材料分布以获得期望的本征模形状的技术,以解决使基本本征频率最大化的问题。使用带有罚分的固体各向同性方法(SIMP)可以实现拓扑优化的设计目标。提出了在有界公式中添加的加权约束,以使基本固有频率最大化,这为防止优化过程中的模式切换提供了一种简单直接的方法。除了最大化基频,还提出了一种方法,用于修改现有的本征模以连续演化并在优化过程中采用与所需模相同的形状。通过将模态保证标准(MAC)添加为约束公式优化中的附加约束,可以获得具有所需本征模的结构的拓扑布局。举例说明了所提出的方法,并说明了所提出的技术在机械系统解耦中的潜在应用。

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