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Laser ultrasonic analysis of normal modes generated by a voltage pulse on an AT quartz sensor

机译:激光超声分析AT石英传感器上的电压脉冲产生的正常模式

摘要

Laser ultrasonic detection is a versatile and highly sensitive tool for the observation of surface waves. In the following study, laser ultrasonic detection is used for the experimental study of spurious normal vibration modes of a disk quartz sensor excited by a voltage pulse. The AT cut crystal (cut of the crystal relative to the the main crystallographic axis is 35.25) is optimal for generating mainly thickness–shear vibrations (central frequency 6 MHz) on the quartz surface. However, resulting from shear-to-longitudinal and shear-to-surface mode conversion, and from the weak coupling with the other crystallographic axes, other modes (thickness-compressional and bending modes) are always present in the plate response. Since the laser vibrometer is sensitive to normal displacements, the laser investigation shows waves that can be considered as unwanted for the AT quartz used as a shear sensor. The scanned three dimensional (3D) amplitude–space–time signals are carefully analysed using their representation in three dual Fourier domains (space–time, wave number–frequency). Results on the transient analysis of the waves, the normal bending modes and the dispersion curves are shown.
机译:激光超声检测是一种用于观察表面波的多功能且高度灵敏的工具。在以下研究中,将激光超声检测用于由电压脉冲激发的磁盘石英传感器的伪正常振动模式的实验研究。 AT切割晶体(相对于主晶体学轴的晶体切割为35.25)最适合于在石英表面产生主要的厚度剪切振动(中心频率6 MHz)。但是,由于剪切至纵向模态和剪切至表面模态转换以及与其他晶体学轴的弱耦合,在板响应中始终存在其他模式(厚度压缩和弯曲模式)。由于激光振动计对法向位移敏感,因此激光调查显示,对于用作剪切传感器的AT石英,可以认为该波是有害的。使用三个双重傅里叶域(时空,波数-频率)中的表示,对扫描的三维(3D)振幅-时空信号进行了仔细分析。显示了波浪的瞬态分析结果,法向弯曲模式和色散曲线。

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