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Nonlinear eigenvalue topology optimization for structures with frequency-dependent material properties

delete2022-05-01
delete14
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OA
AI
李取浩 cover
李取浩 (Quhao Li)
S
Suguang Dou
王继来 cover
王继来 (Jilai Wang)
S
Shutian Liu
陈
陈文炯 (Wenjiong Chen) *
DOI:10.1016/j.ymssp.2022.108835delete
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Abstract

Abstract

En 中文
Eigenvalue topology optimization problem has been a hot topic in recent years for its wide ap-plications in many engineering areas. In the previous studies, the applied materials are usually assumed as elastic, and the resulting structural eigenfrequencies are obtained by solving a linear eigenvalue problem. However, many engineering materials, such as viscoelastic materials, have frequency-dependent modulus, which results in a more complicated nonlinear eigenvalue prob-lem. This paper presents a systematic study on the nonlinear eigenvalue topology optimization problem with frequency-dependent material properties. The nonlinear eigenvalue problem is solved by a continuous asymptotic numerical method based on the homotopy algorithm and perturbation expansion technique, which involves higher-order differentiation of the nonlinear term and shows a fast convergence. Several schemes are proposed to improve the computational accuracy, applicability, and robustness of the method for the application in topology optimiza-tion, including Fa`a di Bruno's theorem, bisection method, and inverse iteration based eigenvector modification method. Three optimization problems are solved to demonstrate the effectiveness of the developed methods, including the maximization of the fundamental frequency, the eigen -frequency separation interval between two adjacent eigenfrequencies of given orders, and the eigenfrequency separation interval at a given frequency. Numerical examples show the large influence of the frequency-dependent material properties on the optimized results and validate the effectiveness of the developed method.
Keywords:
Nonlinear eigenvalue problem
Frequency-dependent material properties
Asymptotic numerical method
Eigenvector modification
Topology optimization

Journal

Mechanical Systems and Signal Processing cover
Mechanical Systems and Signal Processing
IF:
8.9
Papers:
1.3W
Citations:
6.6W

Organization

T
technical university of denmark
Scholars:
2.6W
Papers: 2.8W
Citations: 37
S
shandong university
Scholars:
9.5W
Papers: 6.4W
Citations: 94
D
Dalian University of Technology
Scholars:
6.0W
Papers: 4.4W
Citations: 5.5W
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Cited Papers

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