Investigations of thickness-shear mode elastic constant and damping of shunted piezoelectric materials with a coupling resonator

被引:1
|
作者
胡吉英 [1 ]
李朝晖 [1 ]
孙阳 [1 ,2 ]
李启虎 [3 ]
机构
[1] Department of Electronics,Peking University
[2] College of Science,Beijing Forestry University
[3] Advanced Technology Institute,Peking University
基金
国家国防基金;
关键词
piezoelectric materials; shunt damping; shear mode; elastic constant;
D O I
暂无
中图分类号
TB535 [振动和噪声的控制及其利用];
学科分类号
083002 ; 120402 ;
摘要
Shear-mode piezoelectric materials have been widely used to shunt the damping of vibrations where utilizing surface or interface shear stresses. The thick-shear mode(TSM) elastic constant and the mechanical loss factor can change correspondingly when piezoelectric materials are shunted to different electrical circuits. This phenomenon makes it possible to control the performance of a shear-mode piezoelectric damping system through designing the shunt circuit. However, due to the difficulties in directly measuring the TSM elastic constant and the mechanical loss factor of piezoelectric materials, the relationships between those parameters and the shunt circuits have rarely been investigated. In this paper, a coupling TSM electro–mechanical resonant system is proposed to indirectly measure the variations of the TSM elastic constant and the mechanical loss factor of piezoelectric materials. The main idea is to transform the variations of the TSM elastic constant and the mechanical loss factor into the changes of the easily observed resonant frequency and electrical quality factor of the coupling electro–mechanical resonator. Based on this model, the formular relationships are set up theoretically with Mason equivalent circuit method and they are validated with finite element(FE) analyses. Finally, a prototype of the coupling electro–mechanical resonator is fabricated with two shear-mode PZT5 A plates to investigate the TSM elastic constants and the mechanical loss factors of different circuit-shunted cases of the piezoelectric plate. Both the resonant frequency shifts and the bandwidth changes observed in experiments are in good consistence with the theoretical and FE analyses under the same shunt conditions. The proposed coupling resonator and the obtained relationships are validated with but not limited to PZT5 A.
引用
收藏
页码:445 / 454
页数:10
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