4.7 Article

Spectral element modeling and experimental investigations on vibration behaviors of imperfect plate considering irregular hole and curved crack

期刊

JOURNAL OF SOUND AND VIBRATION
卷 529, 期 -, 页码 -

出版社

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jsv.2022.116924

关键词

Free vibration; Spectral element method; Modal test; Plate with hole and crack

资金

  1. National Natural Science Foundation of China [52075554]
  2. Postgraduate Scientific Research Innovation Project of Hunan Province [CX20210214]
  3. Fundamental Research Funds for the Central Universities of Central South University [2021zzts0138]

向作者/读者索取更多资源

This work focuses on exploring the free vibration mechanism of plates with complex holes and cracks of arbitrary shape. A weak-form spectral element modeling approach is proposed and experimentally validated. By employing a flexible coordinate mapping strategy, the discontinuity problem of irregular holes and varying curvature cracks is effectively addressed. Modal experiments further confirm the excellent predictive capability of the spectral element methodology in vibration performance.
A weak-form spectral element modeling and the corresponding experimental studies in this work are concerned to clarify free vibration mechanism for the plate of arbitrary shape having built-in complex hole and crack. To effectively address the discontinuity problem at irregular hole as well as crack of varying curvature, some quadrilateral plate elements with variable curvature edges are rigidly coupled together to form the investigated structural system. A flexible coordinate mapping strategy is here employed for satisfying the adaptability requirements of the introduced displacement functions to the sophisticated solution domain. Accordingly, the complete vibration equation of the physical model is solved based on the well-known first-order scheme of plate in conjunction with 2D spectral element functions, where the boundary constraints and compatibility relations in the form of energy quantification are imposed through the penalty function method. After that, modal experiments considering six unconstrained imperfect plates with preconfigured crack and hole, are incorporated with a series of acceptable solutions, provided by the available literature and some associated models of FEM, for disclosing the excellent predictive capability of the spectral element methodology in vibration performance. The reported eigenfrequencies and eigenmodes respecting arbitrarily shaped plate introducing intricate hole and curved crack are the first presented vibration solutions, and meaningful benchmarks for evaluating correctness of other numerical or analytical approaches.

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