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首页> 外文期刊>Journal of Nondestructive Evaluation >Measurement of Acoustoelastic Effect of Rayleigh Wave in Plastically Deformed Silicon Steel Using Lensless Line-Focus Acoustic Microscopy
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Measurement of Acoustoelastic Effect of Rayleigh Wave in Plastically Deformed Silicon Steel Using Lensless Line-Focus Acoustic Microscopy

机译:无透镜线焦点声波显微镜测量塑性变形硅钢中瑞利波的声弹效应

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摘要

In this paper, a lensless line-focus poly(vinylidene fluoride trifluoroethylene) [P(VDF-TrFE)] ultrasound transducer and its defocusing measurement system have been applied to measure the acoustoelastic effect of Rayleigh wave propagating inside a plastically deformed silicon steel. The silicon steel sheets are subjected to uni-axial tensile loading so that different levels of permanent deformation ranging from 5 to 30 % are created. Since the ultrasound transducer is line-focused, Rayleigh wave velocities on each of the plastically deformed silicon steel samples can be measured along various directions relative to the loading direction. Finally, the correlation between Rayleigh wave velocity and plastic deformation is experimentally established in a direct, easy, and accurate way. The experimental results can then be used for the purpose of non-destructive evaluation of silicon steels which are widely used in industry.
机译:本文采用无透镜线聚焦聚偏二氟乙烯三氟乙烯[P(VDF-TrFE)]超声换能器及其散焦测量系统来测量瑞利波在塑性变形硅钢内部传播的声弹性效应。硅钢板承受单轴拉伸载荷,从而产生5%到30%的不同水平的永久变形。由于超声换能器是线聚焦的,因此可以沿相对于加载方向的各个方向测量每个塑性变形的硅钢样品上的瑞利波速度。最后,以直接,简单和准确的方式通过实验建立了瑞利波速度与塑性变形之间的相关性。然后,实验结果可用于对工业上广泛使用的硅钢进行无损评估的目的。

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