Research on pipe in-line inspection technology based on the rotating electromagnetic field

Feng Yijing, Zhang Laibin, Zheng Wenpei, Liu Haitao
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Abstract

A multidisciplinary non-destructive study based on the rotating electromagnetic field has been carried out in an attempt to inspect cracks in any direction on the inner wall of a pipeline with high precision. In this study, an approach is proposed to test and evaluate pipe integrity. An inspection tool that works according to the rotating electromagnetic field is developed in order to determine stress corrosion cracking. In addition, experiments are carried out to test the practicality of the tool. Firstly, the principle and function of the rotating electromagnetic field tool are revealed and the results show that the tool has an outstanding crack inspection capability on the pipe wall. It can also provide a technical reference for the early warning and long-term safe service of metal structures.
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基于旋转电磁场的管道在线检测技术研究
为了高精度地检测管道内壁任意方向的裂纹,开展了基于旋转电磁场的多学科无损检测研究。本研究提出了一种管道完整性测试与评价方法。为了确定应力腐蚀裂纹,研制了一种根据旋转电磁场工作的检测工具。此外,还进行了实验,验证了该工具的实用性。首先,介绍了旋转电磁场检测工具的工作原理和功能,结果表明,旋转电磁场检测工具对管壁裂纹检测能力较强。为金属结构的早期预警和长期安全使用提供技术参考。
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Multi-criterion analysis-based artificial intelligence system for condition monitoring of electrical transformers MFL detection of adjacent pipeline defects: a finite element simulation of signal characteristics A multi-frequency balanced electromagnetic field measurement for arbitrary angles of pipeline cracks with high sensitivity Ultrasonic total focusing method for internal defects in composite insulators Developments in ultrasonic and eddy current testing in the 1970s and 1980s with emphasis on the requirements of the UK nuclear power industry
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