超材料
带隙
振动
有限元法
材料科学
调制(音乐)
声学
传输(电信)
噪音(视频)
声学超材料
光学
波传播
相(物质)
物理
压力(语言学)
共振(粒子物理)
频带
衍射
光子晶体
声共振
材料性能
噪声控制
相位调制
数值分析
相速度
光电子学
作者
Shuo Zhang,Shu-liang Cheng,Yue Meng,Liu-Chang Zhang,Ya-Jun Xin,Yong-Tao Sun,Qingxin Zhao
标识
DOI:10.1142/s0217984926500296
摘要
Based on the local resonance mechanism, a novel biphasic plate metamaterial structure is proposed in this paper, and the finite element analysis of the structure is carried out to analyze the bandgap characteristics and vibration modes of the structure. The elastic wave propagation characteristics in the structure were analyzed by group and phase velocities to verify the acoustic performance of the structure. Subsequently, the structure is optimized and designed, and the new structure has a first bandgap onset frequency below 100[Formula: see text]Hz and as low as 64.47[Formula: see text]Hz. Then, the transmission characteristics of the model were analyzed to verify the accuracy of the bandgap range, and the stress analysis was performed. Finally, the effects of geometrical and material parameters on the bandgap are analyzed, and some laws are found. This study provides a new idea for the practical engineering application of low-frequency vibration noise reduction.
科研通智能强力驱动
Strongly Powered by AbleSci AI