Metal magnetic memory technique has been extensively applied in different fields due to its unique advantages of time-saving, low cost, and high efficiency. However, very limited research has been carried out on studying the characteristics of metal magnetic memory signals of different defects except crack, and also the effect of orientation angle between testing direction and defect on magnetic memory signals. To promote study in this area, the magnetic memory signals of typical defects (such as crack, slag inclusion) are investigated as well as hydrogen-induced cracking. In addition, the characteristics of magnetic memory signals when measured with different angle between testing direction and defects were obtained. The results indicate that the metal magnetic memory technique is a promising method to detect typical defects of welding and also hydrogen-induced cracking. Moreover, the technique has high sensitivity on defects no matter the angle between testing direction and defect. However, further research is needed because it can only find the possible location of defects but cannot quantitatively describe the defect.
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ASME 2015 Pressure Vessels and Piping Conference
July 19–23, 2015
Boston, Massachusetts, USA
Conference Sponsors:
- Pressure Vessels and Piping Division
ISBN:
978-0-7918-5698-7
PROCEEDINGS PAPER
Metal Magnetic Memory Testing Technique for Typical Defects in Pressure Vessels and Pipelines
Weihe Guan,
Weihe Guan
Hefei General Machinery Research Institute, Hefei, China
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Pengju Guo,
Pengju Guo
Hefei General Machinery Research Institute, Hefei, China
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Chen Xuedong
Chen Xuedong
Hefei General Machinery Research Institute, Hefei, China
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Weihe Guan
Hefei General Machinery Research Institute, Hefei, China
Pengju Guo
Hefei General Machinery Research Institute, Hefei, China
Chen Xuedong
Hefei General Machinery Research Institute, Hefei, China
Paper No:
PVP2015-45826, V005T10A004; 6 pages
Published Online:
November 19, 2015
Citation
Guan, W, Guo, P, & Xuedong, C. "Metal Magnetic Memory Testing Technique for Typical Defects in Pressure Vessels and Pipelines." Proceedings of the ASME 2015 Pressure Vessels and Piping Conference. Volume 5: High-Pressure Technology; Rudy Scavuzzo Student Paper Competition and 23rd Annual Student Paper Competition; ASME NDE Division. Boston, Massachusetts, USA. July 19–23, 2015. V005T10A004. ASME. https://doi.org/10.1115/PVP2015-45826
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