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Finding the dispersion relations for lamb-type waves in a concave piezoelectric plate by optical visualization of the ultrasound field radiated into a fluid

机译:通过可视化辐射到流体中的超声场,找到凹形压电板中兰姆波的色散关系

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摘要

We propose and experimentally demonstrate a method for measuring the phase velocities of Lamb waves in concave piezoelectric plates submerged in a fluid. The method is based on the optical shadowgraphy method of visualizing the ultrasound field that occurs in a fluid when Lamb modes are excited in the plate under study. According to the condition of wave resonance, the propagation direction of the waves radiated into the fluid is determined by the phase velocity of a Lamb wave in the plate, which makes it possible to measure the indicated velocity. Proceeding from this, we demonstrate that when spherical concave piezoelectric plates are used, the phase velocities of Lamb waves can be determined by the position of the caustics-areas of acoustic wave focusing in the fluid. We have experimentally measured the dispersion curves of several Lamb modes for a concave piezoelectric plate with a diameter of 100 mm and thickness of around 2 mm, which was submerged in water. Ultrasound waves were optically visualized in the fluid by the schlieren method on a specially designed setup, in which off-axis parabolic mirrors were used to implement the dark-field method. We demonstrated that the measured dispersion curves for low-order Lamb modes are well described by the theoretical dependences calculated using the Rayleigh-Lamb equation.
机译:我们提出并通过实验证明了一种用于测量浸没在流体中的凹形压电板中的兰姆波的相速度的方法。该方法基于光学阴影照相法,该方法可视化当在研究的平板中激发Lamb模式时流体中出现的超声场。根据波共振的条件,辐射到流体中的波的传播方向由板中的兰姆波的相速度确定,这使得可以测量指示的速度。从这一点出发,我们证明当使用球形凹面压电板时,兰姆波的相速度可以通过声波在流体中聚焦的焦散区域的位置来确定。对于直径为100 mm,厚度约为2 mm的凹形压电板,我们已经实验测量了几种Lamb模式的色散曲线,该压电板浸没在水中。在特殊设计的装置上,通过schlieren方法将流体中的超声波可视化,其中使用离轴抛物面反射镜实施暗场方法。我们证明了通过使用瑞利-兰姆方程计算的理论依赖性很好地描述了低阶兰姆模式的实测色散曲线。

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