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首页> 外文期刊>Journal of Sensor Technology >Non-Contact Stress Measurement during Tensile Testing Using an Emat for SH0-Plate Wave and Lamb Wave
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Non-Contact Stress Measurement during Tensile Testing Using an Emat for SH0-Plate Wave and Lamb Wave

机译:使用Emat进行SH0板波和兰姆波拉伸测试期间的非接触应力测量

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The stress on a test specimen during tensile testing is generally measured by a strain gauge. This method has some problems in that it would influence the measurement conditions of the tensile test and can evaluate only the position at which the strain gauge is attached. The acoustoelastic method is proposed as a method replacing the strain gauge method. However, an ultrasonic sensor with a piezoelectric oscillator requires a coupling medium to inject an ultrasonic wave into a solid material. This condition, due to the error factor of the stress measurement, makes it difficult for the ultrasonic sensor to move on the specimen. We then tried to develop a non-contact stress measurement system during tensile testing using an electromagnetic acoustic transducer (EMAT) with an SH0-plate wave and S0-Lamb wave. The EMAT can measure the propagation time in which the ultrasonic wave travels between a receiver and a transmitter without a coupling medium during the tensile testing and can move easily. The interval between the transmitter and the receiver is 10mm and can be moved along the parallel direction or the vertical direction of the tensile load. The transit time was measured by a cross-correlation method and converted into the stress on the test specimen using the acoustoelastic method. We confirmed that the stress measurement using an SH0-plate wave was superior to that with an S0-Lamb wave.
机译:拉伸试验期间,试样上的应力通常通过应变仪测量。该方法存在一些问题,因为它将影响拉伸试验的测量条件,并且只能评估应变计的安装位置。提出了用声弹法代替应变计法的方法。然而,具有压电振荡器的超声波传感器需要耦合介质以将超声波注入固体材料中。由于应力测量的误差因素,这种情况使超声波传感器很难在样品上移动。然后,我们尝试使用具有SH0板波和S0-Lamb波的电磁声换能器(EMAT)开发拉伸测试期间的非接触应力测量系统。 EMAT可以测量拉伸测试期间超声波在没有耦合介质的情况下在接收器和发送器之间传播的传播时间,并且可以轻松移动。发射器和接收器之间的间隔为10mm,可以沿拉伸载荷的平行方向或垂直方向移动。通过互相关方法测量渡越时间,并使用声弹性方法将其转换为试样的应力。我们确认,使用SH0板波的应力测量结果优于使用S0-Lamb波的应力测量结果。

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