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A novel system for non-destructive evaluation of surface stress in pipelines using rotational continuous magnetic Barkhausen noise

机译:使用旋转连续磁性巴克响起的管道表面应力的非破坏性评价新系统

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摘要

In the present work a new system for nondestructive evaluation of applied stress on the pipeline steels surface is proposed. This system is based on applying a magnetic field on the pipe surface, whose direction changes due to rotatory permanent magnets. The variation of magnetic field direction produces the Barkhausen signal, which is measured by a pick-up coil. The angular dependence of the magnetic Barkhausen noise signal energy is influenced by the pipe surface curvature due to the changing head-probe liftoff. Also, the said angular dependence changes with the applied tensile stress due to the magneto-elastic effect. The result of Barkhausen noise measurements in the pipeline surface submitted to applied tensile stress reveals that, since the effect of curvature on the angular dependence remains constant, the effect of applied stress could be determined by analyzing the angular dependence variation of the Barkhausen signal with the applied stress. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在本作工作中,提出了一种新的管道钢表面上施加应力的非破坏性评估系统。该系统基于在管表面上施加磁场,其方向由于旋转永磁体而变化。磁场方向的变化产生了由拾取线圈测量的Barkhausen信号。由于变化的头部探头升压,磁性巴卡豪森噪声能量的角度依赖性受管表面曲率的影响。而且,由于磁弹性效应,所述角度依赖性随着施加的拉伸应力而变化。提交到施加拉伸应力的管道表面中的Barkhausen噪声测量结果表明,由于曲率对角度依赖性的影响保持恒定,因此可以通过分析Barkhausen信号的角度依赖性变化来确定施加应力的效果施加压力。 (c)2019年elestvier有限公司保留所有权利。

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