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带有谐振环的三明治金字塔晶格芯板的振动与带隙特性

Vibration and Bandgap Behavior of Sandwich Pyramid Lattice Core Plate with Resonant Rings.

作者信息

Li Chengfei, Chen Zhaobo, Jiao Yinghou

机构信息

School of Mechatronics Engineering, Harbin Institute of Technology, Harbin 150001, China.

出版信息

Materials (Basel). 2023 Mar 29;16(7):2730. doi: 10.3390/ma16072730.

Abstract

The vibration suppression performance of the pyramid lattice core sandwich plates is receiving increasing attention and needs further investigation for technical upgrading of potential engineering applications. Inspired by the localized resonant mechanism of the acoustic metamaterials and considering the integrity of the lattice sandwich plate, we reshaped a sandwich pyramid lattice core with resonant rings (SPLCRR). Finite element (FE) models are built up for the calculations of the dispersion curves and vibration transmission. The validity of the bandgap of the SPLCRR and remarkable vibration suppression are verified by experimental observations and the numerical methods. Furthermore, the effects of geometric parameters, material parameters and period parameters on the bandgaps of the SPLCRR are systematically investigated, which offers a deeper understanding of the underlying mechanism of bandgap and helps the SPLCRR structure meet the technological update requirements of practical engineering design.

摘要

金字塔晶格芯夹层板的振动抑制性能越来越受到关注,为了潜在工程应用的技术升级,需要进一步研究。受声学超材料局部共振机制的启发,并考虑到晶格夹层板的完整性,我们对带有共振环的夹层金字塔晶格芯(SPLCRR)进行了重塑。建立了有限元(FE)模型来计算色散曲线和振动传递。通过实验观察和数值方法验证了SPLCRR带隙的有效性以及显著的振动抑制效果。此外,系统地研究了几何参数、材料参数和周期参数对SPLCRR带隙的影响,这有助于更深入地理解带隙的潜在机制,并帮助SPLCRR结构满足实际工程设计的技术更新要求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/decb/10095788/fba856f5ce50/materials-16-02730-g001.jpg

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