机电耦合系数
材料科学
压电
电介质
复合材料
振荡(细胞信号)
复合数
压电系数
表面微加工
电阻抗
联轴节(管道)
谐振器耦合系数
制作
声学
传感器
刚度
谐振器
电气工程
光电子学
工程类
物理
病理
生物
医学
替代医学
遗传学
作者
Xiaohua Jian,Sibo Li,Wenbin Huang,Yaoyao Cui,Xiaoning Jiang
标识
DOI:10.1177/1045389x14546657
摘要
Micromachined single-crystal piezoelectric 1-3 composites are known for high electromechanical coupling coefficients, low acoustic impedance, high processing precision and uniformity, which are desired for high-frequency ultrasound transducers. In this article, based on Smith and Auld’s 1-3 composite thickness-mode oscillation model, the effect of etched side wall slope on the electromechanical characteristics of micromachined piezoelectric 1-3 composites was studied. In specific, strain constant, stiffness, dielectric constant, electromechanical coupling coefficient, acoustic impedance, longitudinal velocity, and frequency of micromachined 1-3 composites were deduced using the developed model. The analytical model was then verified by a COMSOL simulation and experimental measurements of a micromachined composite sample with pitch of 15.9 µm, thickness of 42.8 µm, and etched pillar slope angle of 83.8°. The measured center frequency was 49.05 MHz, electromechanical coupling coefficient was 0.66, dielectric constant was 1178, and strain constant was 26.90 C/m 2 , which all agreed well with the analytical calculations. These results will be helpful in design and fabrication of high-frequency micromachined ultrasound transducers.
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