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An accurate method for measurement of transverse elastic-wave velocities

机译:测量横向弹性波速度的一种精确方法

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摘要

We demonstrate a novel analysis that improves the accuracy of angle-dependent elastic-wave velocities in plates for water-immersion measurements. Water-immersion measurements utilize the conversion from longitudinal to transverse mode to determine the velocities of transverse waves. However, beyond the critical angle for longitudinal waves, the phase of the transmitted transverse waves is affected by the presence of evanescent longitudinal waves at the interface. With pulse superposition analysis this effect systematically decreases the apparent velocities at some angles. Previous researchers have corrected the apparent velocities by calculating the theoretical phase shift from known parameters, but this correction requires narrow-band pulses or tone bursts as well as estimations of these parameters. An advantage of our analysis is that it eliminates the need for a priori estimations of parameters. In addition, this analysis allows the use of broad-band pulses that are more applicable to thin plates. To demonstrate these advantages, measurements were conducted on an isotropic steel plate as it was rotated in an immersion tank and insonified with a broad-band ultrasonic transducer. We compared velocities determined by the pulse-echo superposition analysis with velocities determined by our analysis. As expected, there was no significant difference between the longitudinal velocities, but systematic variations in the transverse velocities were lower with this new method.
机译:我们演示了一种新颖的分析方法,该分析方法可提高水浸测量板中角度相关的弹性波速度的精度。水浸测量利用从纵向模式到横向模式的转换来确定横向波的速度。但是,除了纵向波的临界角之外,传输的横向波的相位会受到界面处渐逝的纵向波的影响。通过脉冲叠加分析,该效果会系统地降低某些角度的视在速度。以前的研究人员已经通过计算已知参数的理论相移来校正视在速度,但是这种校正需要​​窄带脉冲或音调突发以及这些参数的估计。我们分析的一个优点是它消除了对参数进行先验估计的需要。另外,该分析允许使用更适用于薄板的宽带脉冲。为了证明这些优点,在​​各向同性钢板上进行测量,方法是将其在浸没槽中旋转并用宽带超声换能器进行声处理。我们将脉冲回波叠加分析确定的速度与分析确定的速度进行了比较。正如预期的那样,纵向速度之间没有显着差异,但是使用这种新方法,横向速度的系统变化较小。

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