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A device for measuring the velocity of ultrasonic waves: An application to stress analysis

机译:超声波速度测量装置:在应力分析中的应用

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In this paper we present a device for the practical application of an ultrasonic critical-angle refractometry (UCRfr) technique. UCRfr is a technique for measuring the velocity of longitudinal, shear and Rayleigh waves, developed to improve the traditional ultrasonic methods for measuring the stress level in materials by means of acousto-elasticity. The technique consists of relating the variations in wave propagation velocity to variations in the angle of refraction at the interface with a second medium. Variations in the angle of refraction are determined on the basis of delay in receiving of the same wave at two different points. The study deals with the measurements of velocity changes of longitudinal wave due to uniaxial stress. In the present work the effects of stress on aluminum and steel specimens have been studied. Experimentation has shown the potential of the technique for stress measurement; on the other hand, when the applied stress is known, it allows the measurement of the acoustoelastic constants of longitudinal waves. As regards measuring variations in velocity induced by stress, using this method it is possible, with a suitable choice of the material the device is made of, to isolate the effects of stress on velocity from the possible effects of temperature. [References: 9]
机译:在本文中,我们介绍了一种用于超声临界角折光仪(UCRfr)技术的实际应用的设备。 UCRfr是一种用于测量纵向波,剪切波和瑞利波速度的技术,其开发目的是改进传统的超声波方法,该方法通过声弹性来测量材料中的应力水平。该技术包括将波传播速度的变化与与第二介质的界面处的折射角的变化相关联。基于在两个不同点处接收相同波的延迟来确定折射角的变化。该研究涉及由于单轴应力引起的纵波速度变化的测量。在目前的工作中,已经研究了应力对铝和钢试样的影响。实验表明了该技术在应力测量中的潜力。另一方面,如果知道施加的应力,就可以测量纵波的声弹性常数。关于测量应力引起的速度变化,使用这种方法,可以通过适当选择设备的材料来将应力对速度的影响与温度的可能影响区分开。 [参考:9]

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