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1)  thickness shear vibration
厚薄切变振动
2)  thickness-shear-mode vibration
厚度切变振动
1.
An optimal design method of electrode structure based on finite element analysis is proposed to solve the problem that some designs of electrode structures can destroy the singularity of the thickness-shear-mode vibration of quartz crystal microbalance(QCM).
针对某些电极结构会破坏石英晶体微天平厚度切变振动模态单一性的问题,该文提出了基于有限元分析优化设计电极结构的方法。
3)  thickness vibration
厚薄振动
4)  thickness trapped shear
厚度能陷切变振动
1.
Based on the theory of piezo-ceramic thickness trapped shear, the novel structure and process technology are applied in the production of the SMD filters.
利用压电陶瓷的厚度能陷切变振动原理,采用新的结构与工艺,对原TV用压电陶瓷滤波器进行片式化。
5)  thickness shear vibration mode
厚度切变振动模式
6)  shear vibration
切变振动
1.
Based on the shear vibration of piezoelectric ceramics,a novel piezoelectric micro jet is designed.
利用压电陶瓷的厚度切变振动,设计出一种新型微喷。
2.
In the micro-jet,the liquid cavity was formed by the piezoelectric ceramics and the pressure wave is produced by the shear vibration of the thickness to result in ejection of a droplet.
该微喷利用压电陶瓷围成液体腔,通过厚度切变振动产生压力波,使液滴喷射。
补充资料:厚度切变振动机电耦合系数
分子式:
CAS号:

性质:表示压电振子厚度切变振动时,机械能与电能之间相互转换的能力,通常用K15表示。可用下式计算求得:式中,ε11T为自由介电常数;ε11S为受夹介电常数。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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