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首页> 外文期刊>Journal of environmental & engineering geophysics >Calibration of a Piezoelectric Transducer through Laser Measurements and Numerical Simulation
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Calibration of a Piezoelectric Transducer through Laser Measurements and Numerical Simulation

机译:通过激光测量和数值模拟校准压电换能器

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摘要

A piezoelectric transducer is an electromechanical sensor which converts electrical energy (voltage signal) to mechanical energy (displacement signal) and vice versa by taking advantage of the piezoelectric crystal. Depending on the physical combination of transducer parts, sensors may have a linear or non-linear response to the input signal. In seismic tests such as ultrasonic nondestructive testing (NDT) methods, analyzing stress wave propagation through the specimen gives an assessment of its condition. The signal attenuation is an important parameter to assess the condition of specimen which can be done by having the displacement signal as an output. However, instead of the displacement signal, the piezoelectric transducer provides the voltage signal as an output. Therefore, to get reliable and accurate results, it is essential to calibrate the transducers. An appropriate calibration results in a suitable Transfer Function (TF) which can be used to properly calculate the displacement signal. In this study, the output displacement of a 1 MHz piezoelectric transducer is measured using a laser vibrometer with a nanometer resolution. Measurements and calculated TF showed at frequencies of 0.1, 1, and 1.5 MHz, TF values are 0.8, 0.08, and 0.2 respectively which is a non-linear relation between displacement (absolute signal) and voltage (relative signal) as it was expected. Then, numerical simulation is implemented as part of this study to simulate all electrical and mechanical components of the piezoelectric transducer. The simulation was verified with the absolute displacement measurements result from the laser vibrometer.
机译:压电换能器是一种机电传感器,它通过利用压电晶体将电能(电压信号)转换为机械能(位移信号),反之亦然。根据换能器部件的物理组合,传感器可以对输入信号具有线性或非线性响应。在诸如超声波无损检测(NDT)方法的地震检验中,通过样本分析应力波传播给出了其条件的评估。信号衰减是评估可以通过使位移信号作为输出来完成的样本条件的重要参数。然而,代替位移信号,压电换能器将电压信号提供为输出。因此,为了获得可靠和准确的结果,必须校准换能器。适当的校准导致合适的传递函数(TF),其可用于适当地计算位移信号。在该研究中,使用具有纳米分辨率的激光振动计测量1MHz压电换能器的输出位移。测量和计算的TF在0.1,1和1.5MHz的频率下显示为0.8,0.08和0.2,其是位移(绝对信号)和电压(相对信号)之间的非线性关系。然后,实现数值模拟作为本研究的一部分,以模拟压电换能器的所有电气和机械部件。使用激光振动计验证了模拟,绝对位移测量结果。

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