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二维周期性双壁格栅的振动带隙特性

Vibration Band Gap Characteristics of Two-Dimensional Periodic Double-Wall Grillages.

作者信息

Wang Chuanlong, Yao Xiongliang, Wu Guoxun, Tang Li

机构信息

College of Shipbuilding Engineering, Harbin Engineering University, Harbin 150001, China.

出版信息

Materials (Basel). 2021 Nov 25;14(23):7174. doi: 10.3390/ma14237174.

Abstract

In this article, the wave finite element method (WFEM) is used to calculate the band gap characteristics of two-dimensional (2D) periodic double-wall grillages (DwGs), which are verified by the grillage model vibration measurement experiment and finite element calculation. To obtain the band gap characteristics of periodic DwGs, the finite element calculation model is established according to the lattice and energy band theory and the characteristic equation of the periodic unit cell under the given wave vector condition is solved based on Bloch theorem. Then, the frequency transfer functions of finite-length manufactured and finite element models are obtained to verify the band gap characteristics of periodic DwGs. Finally, the effects of material parameters and structural forms on band gap characteristics and transfer functions are analyzed, which can provide a reference for engineering structure vibration and noise reduction design.

摘要

本文采用波动有限元法(WFEM)计算二维(2D)周期性双壁格构梁(DwGs)的带隙特性,并通过格构梁模型振动测量实验和有限元计算进行验证。为了获得周期性DwGs的带隙特性,根据晶格和能带理论建立有限元计算模型,并基于布洛赫定理求解给定波矢条件下周期晶胞的特征方程。然后,获得有限长度制造模型和有限元模型的频率传递函数,以验证周期性DwGs的带隙特性。最后,分析了材料参数和结构形式对带隙特性和传递函数的影响,可为工程结构振动与降噪设计提供参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66d2/8658474/2f156a6088e1/materials-14-07174-g001.jpg

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