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首页> 外文期刊>Journal of Nondestructive Evaluation >Pulsed Eddy Current Testing of Carbon Steel Pipes' Wall-thinning Through Insulation and Cladding
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Pulsed Eddy Current Testing of Carbon Steel Pipes' Wall-thinning Through Insulation and Cladding

机译:碳钢管件绝缘包覆的薄壁脉冲涡流测试

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摘要

Pulsed eddy current testing of wall-thinning through cladding and insulation was studied from both theoretical and experimental aspects. The analytical solution was derived for a simplified four-layered structure and was used to conduct simulations to ascertain the feasibility of this method. A pulsed eddy current testing probe consisting of a circular excitation coil and an AMR-sensor-embedded differential detector was fabricated to measure the time-varying magnetic field signals on the axisymmetric excitation coil's axis. The measurement system was able to measure magnetic field down to a few hundred micro-Gausses in an unshielded environment. Simulation and test results showed that over a certain time after turning off the excitation current the magnetic field signal's decay behavior is almost merely relevant to the pipe's wall thickness. Future development of a carbon steel pipe's wall-thinning can be evaluated by using decay coefficients estimated from previously obtained test data.
机译:从理论和实验两个方面研究了通过包层和绝缘层使壁变薄的脉冲涡流测试。该分析解决方案是为简化的四层结构导出的,并用于进行仿真以确定该方法的可行性。制作了一个由圆形励磁线圈和一个内置AMR传感器的差分检测器组成的脉冲涡流测试探头,以测量轴对称励磁线圈轴上随时间变化的磁场信号。该测量系统能够在非屏蔽环境中测量多达几百个微高斯的磁场。仿真和测试结果表明,在关闭激励电流后的一段时间内,磁场信号的衰减行为几乎仅与管道壁厚有关。碳钢管壁变薄的未来发展可以通过使用从先前获得的测试数据估算出的衰减系数来评估。

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