大尺度压电双晶片悬臂梁的质量检测

A. Rabih, J. Dennis, M. Khir, M. A. Abdullah
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引用次数: 8

摘要

压电悬臂梁在质量传感和能量收集的传感器技术中得到了广泛的应用。本文报道了采用压电双晶片悬臂梁(PZT-5H)进行宏观(mm)尺度质量检测的理论计算、有限元模拟和实验测量。悬臂的长度、宽度和厚度分别为33mm、10mm和0.5mm。悬臂梁静质量为1.325g,共振频率为240.036 Hz,质量灵敏度为377 Hz/g,质量因子为390。计算出的器件谐振频率比测量频率和模拟频率分别高1%和5%。空气阻尼被认为是导致模拟和测量共振频率降低的原因。此外,由于材料覆盖在悬臂梁的压电层上而产生的额外质量也会起作用。在悬臂顶端附着8.96mg的质量,可引起~ 4hz的频移。由于该悬臂梁具有合理的质量灵敏度,可用于质量传感应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mass detection using a macro-scale piezoelectric bimorph cantilever
Piezoelectric cantilevers have found a wide usage in sensor technologies for mass sensing and energy harvesting. This paper reports theoretical calculations, Finite Element Method (FEM) simulation and experimental measurements of mass detection using piezoelectric bimorph cantilever (PZT-5H) in macro (mm) scale. The dimensions of the cantilever are 33mm, 10mm, and 0.5mm for length, width, and thickness, respectively. The cantilever has 1.325g static mass with resonance frequency of 240.036 Hz, mass sensitivity of 377 Hz/g and quality factor of 390. The calculated resonance frequency of the device was 1% and 5% higher than the measured and the simulated frequencies, respectively. Air damping is believed to be the reason for lowering values of the simulated and measured resonance frequencies. In addition the extra masses due to the material coating the piezoelectric layer of the cantilever also play a role. Attachment of 8.96mg mass on the tip of the cantilever found to induce ~4 Hz frequency shift. Due to the reasonable mass sensitivity of the cantilever, it could be used for mass sensing applications.
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