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Fundamental understanding of piezoelectric strain sensors

机译:对压电应变传感器的基本了解

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Abstract: This paper investigates the behavior of piezoelectric elements as strain sensors. Strain is measured in terms of the charge generated by the element as a result of the direct piezoelectric effect. Strains from piezoceramic and piezofilm sensors are compared with strains from a conventional foil strain gage and the advantages of each type of sensor are discussed, along with their limitations. The sensors are surface bonded and are calibrated by means of a dynamic beam bending setup over a frequency range of 5 - 500 Hz. Correction factors to account for transverse strain and shear lag effects due to the bond layer are analytically derived and validated experimentally. Additionally, design of signal conditioning electronics to collect the signals from the piezoelectric sensors is addressed. The superior performance of piezoelectric sensors compared to conventional strain gages in terms of sensitivity and signal to noise ratio is demonstrated.!17
机译:摘要:本文研究了压电元件作为应变传感器的行为。应变是根据元件由于直接压电效应而产生的电荷来测量的。将来自压电陶瓷和压电薄膜传感器的菌株与来自常规箔片应变计的菌株进行了比较,并讨论了每种传感器的优点及其局限性。传感器是表面粘合的,并通过在5-500 Hz频率范围内的动态光束弯曲设置进行校准。通过分析得出修正系数,以解释由于粘结层引起的横向应变和剪切滞后效应,并进行实验验证。另外,解决了用于收集来自压电传感器的信号的信号调节电子设备的设计。在灵敏度和信噪比方面,压电传感器比传统应变计具有更高的性能。!​​17

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