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Microdefocusing method for measuring acoustic properties using acoustic microscope

机译:使用声学显微镜测量声学特性的微散焦方法

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Many papers have been reporting on measuring acoustic properties of materials by acoustic microscopy. In a conventional method of V(z) curve analysis, the phase velocity and the propagation attenuation of a leaky surface acoustic wave (LSAW) are determined from the interference period Delta z and the slope of the V(z) curve, respectively. For this method it is necessary to measure the V(z) curve for a period several times as long as the interference period Delta z. Therefore, it is difficult to measure the acoustic properties of a sample with high resolution by the method. In order to overcome these problems, a method called the microdefocusing method is proposed. The method determines the acoustic properties of a sample by analyzing V(z) values measured in the microdefocusing region within an interference period Delta z near a focal plane. An ultrasonic transducer called the butterfly transducer is proposed to be applied to this microdefocusing method and a digital signal processing procedure is developed to analyze the output of the ultrasonic transducer. Basic experiments are performed to confirm the principles of the new method.
机译:已经有许多论文报道了通过声学显微镜测量材料的声学特性。在常规的V(z)曲线分析方法中,泄漏声表面波(LSAW)的相速度和传播衰减分别由干扰周期Delta z和V(z)曲线的斜率确定。对于这种方法,有必要测量V(z)曲线的时间是干扰周期Delta z的几倍。因此,通过该方法难以以高分辨率测量样品的声学特性。为了克服这些问题,提出了一种称为微散焦方法的方法。该方法通过分析在焦平面附近的干扰周期Delta z内在微散焦区域中测得的V(z)值来确定样品的声学特性。提出将一种称为蝶形换能器的超声换能器应用于这种微散焦方法,并开发一种数字信号处理程序来分析超声换能器的输出。进行了基础实验以确认新方法的原理。

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