Folding beam-type piezoelectric phononic crystal with low-frequency and broad band gap

被引:0
作者
Shan Jiang
Longxiang Dai
Hao Chen
Hongping Hu
Wei Jiang
Xuedong Chen
机构
[1] Huazhong University of Science and Technology,Department of Mechanics
[2] Huazhong University of Science and Technology,Hubei Key Laboratory of Engineering Structural Analysis and Safety Assessment
[3] Huazhong University of Science and Technology,State Key Laboratory of Digital Manufacturing Equipment and Technology
来源
Applied Mathematics and Mechanics | 2017年 / 38卷
关键词
folding beam-type structure; phononic crystal; band gap; wave propagation; piezoelectric; O175.9; O735; O342; 15A18; 74J10; 74K10;
D O I
暂无
中图分类号
学科分类号
摘要
A folding beam-type piezoelectric phononic crystal model is proposed to isolate vibration. Two piezoelectric bimorphs are joined by two masses as a folding structure to comprise each unit cell of the piezoelectric phononic crystal. Each bimorph is connected independently by a resistive-inductive resonant shunting circuit. The folding structure extends the propagation path of elastic waves, while its structure size remains quite small. Propagation of coupled extension-flexural elastic waves is studied by the classical laminated beam theory and transfer matrix method. The theoretical model is further verified with the finite element method (FEM). The effects of geometrical and circuit parameters on the band gaps are analyzed. With only 4 unit cells, the folding beam-type piezoelectric phononic crystal generates two Bragg band gaps of 369Hz to 1 687Hz and 2 127Hz to 4 000Hz. In addition, between these two Bragg band gaps, a locally resonant band gap is induced by resonant shunting circuits. Appropriate circuit parameters are used to join these two Bragg band gaps by the locally resonant band gap. Thus, a low-frequency and broad band gap of 369Hz to 4 000Hz is obtained.
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页码:411 / 422
页数:11
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