基于PVDF压电薄膜的微振动检测系统设计研究

Design and Research of Micro-vibration Detection System based on PVDF Piezoelectric Film

  • 摘要: 航空器蒙皮产生微米级周期振动易引发功能性失效。面向这类微小振动位移检测需求,本文构建了一套基于PVDF压电薄膜的微振动检测系统。通过振动激励装置驱动铝板产生周期振动,再感知贴附于蒙皮表面PVDF传感器的应变信号,实现对微米级位移的识别。结果表明,PVDF传感器输出电压-位移在0.42 μm~42 μm范围内呈现线性相关(R2=0.99)。相比于激光测振仪等传统检测方案,该方案在保持微米级精度的同时具有曲面贴附优势,验证了其在微振动监测中的适用性。

     

    Abstract: Micrometer-level periodic vibrations in aircraft skins can easily lead to functional failures. To address the need for detecting such small vibration displacements, this paper proposes a micro-vibration detection system based on PVDF piezoelectric thin films. By using a vibration excitation device to drive an aluminum plate to produce periodic vibrations, the strain signals from the PVDF sensors attached to the skin surface are detected, enabling the identification of micrometer-level displacements. Results show that the output voltage-displacement relationship of the PVDF sensor exhibits linear correlation within the range of 0.42 μm to 42 μm (R2=0.99). Compared to traditional detection methods such as laser vibrometers, this approach maintains micrometer-level precision while offering the advantage of curved surface adhesion, validating its applicability in micro-vibration monitoring.

     

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