金属芯压电光纤振动传感器

Yixiang Bian, J. Qiu, Xin-wei Wang, H. Ji, K. Zhu
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引用次数: 0

摘要

金属芯压电光纤(MPF)是一种新型的典型传感器和执行器。金属芯精确地位于纤维的中心,并被陶瓷包围。金属芯可用作电极,另一电极涂覆在光纤的外表面。当在电极之间施加外部电压时,假定电场在光纤的径向上。因此,极化陶瓷的极化方向是径向的。因为每根光纤中都有两个电极,所以一根光纤可以用作传感器或执行器。当MPF安装在悬臂梁的表面时,在梁的尖端施加动载荷时,会在光纤上产生轴向应变。由于压电效应,在MPF电极上产生动态电荷。基于压电本构方程,建立了传感器的力学模型。从本构方程出发,导出了悬臂梁端部受动侧向力作用时,在MPF电极上产生电荷的解析表达式。计算了不同金属芯与光纤半径比下,铂芯与钨芯复合材料在悬臂梁顶端受动侧向力作用时的电荷。基于这些方程的数值结果,研究了半径比对MPF传感器电荷的影响。实验研究了MPF传感器的动态振动传感性能。利用MPF传感器获得了悬臂梁的第一模态固有频率。结果表明,该传感器对悬臂梁的振动具有较高的灵敏度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The vibration sensor of metal core piezoelectric fiber
The metal core piezoelectric fiber (MPF) is one of the new typical sensors and actuators. The metal core is precisely located at the center of the fiber and surrounded by the ceramic. The metal core can be used as an electrode and the other electrode is coated on the outer surface of the fiber. When an external voltage is applied between the electrodes, the electric field is assumed to be in the radial direction of the fiber. Hence the direction of the polarization in the polarized ceramic is radial. Because two electric electrodes are available in each fiber, a single fiber can be used as a sensor or an actuator. When MPF is mounted on the surface of a cantilever beam, an axial strain will be generated on the fiber as a dynamic load is applied at the tip of the beam. And a dynamic electric charge will be generated on the electrodes of MPF because of the piezoelectric effect. Based on the piezoelectric constitutive equations, the mechanical model of the sensor is established. When the tip of cantilever beam subjected to a dynamic lateral force, the analytical expressions of the electric charges generated on the electrodes of MPF have been derived from the constitutive equations. The electric charges of the MPF with platinum core or wolfram core, and different metal core to fiber radius ratios were calculated, when the tip of cantilever beam subjected to a dynamic lateral force. The effects of the radius ratio on the electric charge of the MPF sensor are investigated based on the numerical results of these equations. The dynamic vibration sensing properties of MPF sensor were experimentally studied. The first mode natural frequencies of cantilever beam is obtained using MPF sensor. The results show that the sensor can give a high sensitivity for the vibration of cantilever beam.
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