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A Journal of Russian Academy of Sciences
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IssuesArchive of Issues2024-4pp.2644-2655

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F.L. Li, Y.P. Wang, and Y. Zhu, "Sound absorption and optimization of microperforated sandwich plates with hybrid core," Mech. Solids. 59 (4), 2644-2655 (2024)
Year 2024 Volume 59 Number 4 Pages 2644-2655
DOI 10.1134/S0025654424604075
Title Sound absorption and optimization of microperforated sandwich plates with hybrid core
Author(s) F.L. Li (School of Mechanical and Electrical Engineering, Beijing Information Science and Technology University, Beijing, 100192 China, lifenglian@126.com)
Y.P. Wang (School of Mechanical and Electrical Engineering, Beijing Information Science and Technology University, Beijing, 100192 China)
Y. Zhu (School of Mechanical and Electrical Engineering, Beijing Information Science and Technology University, Beijing, 100192 China)
Abstract According to the requirement of noise reduction in low frequency, the upper panel and the corrugated structure of the sandwich plate with corrugation and auxetic honeycomb hybrid core are perforated to form the sound absorption structure of the microperforated sandwich plate, so that the sound can enter the structure which has excellent broadband sound absorption characteristics. Here a theoretical model of the sound absorption performance of microperforated sandwich plate with hybrid core under vertically incident plane wave is established by using classical sound absorption theory. The calculated sound absorption coefficient is calculated and validated by the finite element (Comsol) simulation. Then, the effects of structural parameters and microperforation parameters on the sound absorption behavior are analyzed and discussed. On this basis, the standard genetic algorithm is used to optimize the microperforated sandwich plate with hybrid core.
Keywords microperforation, sound absorption, optimization, hybrid core layer
Received 01 June 2024Revised 13 September 2024Accepted 14 September 2024
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