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首页> 外文期刊>The Journal of the Acoustical Society of America >Diffraction effects on bulk-wave ultrasonic velocity and attenuation measurements
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Diffraction effects on bulk-wave ultrasonic velocity and attenuation measurements

机译:衍射对体波超声速度和衰减测量的影响

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摘要

The loss and phase advance due to diffraction are experimentally observed by measuring the amplitude and phase of radio frequency (rf) tone burst signals in the VHF range, in an ultrasonic transmission line consisting of a buffer rod with an ultrasonic transducer on one end, a couplant of water, and a solid specimen of synthetic silica glass. The measured results agree well with the calculated results from the exact integral expression of diffraction. The diffraction effects on the velocity and attenuation measured in this frequency range and their corrections are investigated to realize more accurate measurements. It is shown that attenuation measurements are influenced by diffraction losses and can be corrected by numerical calculations, and that velocity measurements are affected by the phase advance caused by diffraction. This investigation demonstrates that, in complex-mode velocity measurements, in which the velocity is determined from the measured phase of the signals, the true velocity at each frequency can be obtained by correction using the numerical calculation of diffraction. Based on this result, a new correction method in amplitude-mode velocity measurements is also proposed. In this new method, the velocity is determined from the intervals of interference output obtained by sweeping the ultrasonic frequency for the superposed signals generated by the double-pulse method. Velocity may be measured accurately at frequencies in the Fresnel region, and diffraction correction is essential to obtain highly accurate values with five significant figures or more.
机译:通过测量在VHF范围内的射频(rf)音调猝发信号的幅度和相位,可以在实验中观察到由衍射引起的损耗和相位超前,该超声传输线由一根缓冲棒和一个超声换能器组成,耦合剂水和合成石英玻璃的固体标本。测量结果与衍射精确积分表达式的计算结果非常吻合。研究了在该频率范围内衍射对速度和衰减的影响及其校正,以实现更精确的测量。结果表明,衰减测量受衍射损耗的影响,可以通过数值计算进行校正,而速度测量受衍射引起的相位超前的影响。这项研究表明,在复模速度测量中,其中速度是由信号的测量相位确定的,可以通过使用衍射的数值计算进行校正来获得每个频率下的真实速度。基于此结果,还提出了一种新的振幅模式速度测量校正方法。在这种新方法中,速度是通过对双脉冲方法生成的叠加信号扫描超声波频率而获得的干扰输出间隔来确定的。可以在菲涅耳区域的频率处精确测量速度,并且衍射校正对于获得具有五个或更多个有效数字的高精度值至关重要。

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