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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Experimental study of construction mechanism of V(z) curves obtained by line-focus-beam acoustic microscopy
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Experimental study of construction mechanism of V(z) curves obtained by line-focus-beam acoustic microscopy

机译:线聚焦束声学显微镜获得V(z)曲线构建机理的实验研究

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摘要

The propagation characteristics, viz., phase velocity and attenuation, of leaky surface acoustic waves (LSAWs), excited on the water/sample boundary are obtained through analyzing the V(z) curves measured by line-focus-beam acoustic microscopy. However, different values of these characteristics are obtained, depending upon different ultrasonic devices and operating frequencies employed. The construction mechanism of V(z) curves was investigated experimentally by measuring the amplitude and phase for Teflon to provide an understanding of the device performance for velocity measurements. A V(z) curve measured for Teflon, on which no leaky waves are excited when water is the coupling medium, can be used for the characteristic device response, depending only upon the device parameters and the operating frequencies. From the investigation of the ultrasonic device and the frequency dependences of the characteristic device responses, the phase gradient was found to be directly related to values of measured LSAW velocities. From this result, apparent frequency dependences in LSAW velocity measurements are explained quantitatively for a specimen of gadolinium gallium garnet.
机译:通过分析线聚焦束声学显微镜测得的V(z)曲线,可以得到在水/样品边界上激发的泄漏声表面波(LSAW)的传播特性,即相速度和衰减。但是,取决于所使用的不同超声设备和工作频率,可以获得这些特性的不同值。通过测量特富龙的幅度和相位来实验研究V(z)曲线的构造机理,以了解对速度测量的设备性能。针对特氟龙测得的V(z)曲线可用于特征设备响应,该曲线在水作为耦合介质时不会激发泄漏波,仅取决于设备参数和工作频率。通过对超声设备的研究以及特征设备响应的频率依赖性,发现相位梯度与LSAW速度的测量值直接相关。从该结果可以定量地解释for镓石榴石样品在LSAW速度测量中的明显频率依赖性。

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