Xin'an Yuan , Wei Li , Guoming Chen , Xiaokang Yin , Shejuan Xie , Lisha Peng , Yunze He , Xiucheng Liu , Bin Gao , Xiao Li , Xiangyang Wang , Jianming Zhao , Jianchao Zhao , Jianxi Ding , Qinyu Chen
{"title":"交流磁场检测技术在缺陷检测中的最新进展","authors":"Xin'an Yuan , Wei Li , Guoming Chen , Xiaokang Yin , Shejuan Xie , Lisha Peng , Yunze He , Xiucheng Liu , Bin Gao , Xiao Li , Xiangyang Wang , Jianming Zhao , Jianchao Zhao , Jianxi Ding , Qinyu Chen","doi":"10.1016/j.ndteint.2025.103430","DOIUrl":null,"url":null,"abstract":"<div><div>Alternating current field measurement (ACFM) technology is a promising nondestructive testing (NDT) method with the advantages of non-contact capability, robustness to lift-off effects and quantitative detection. Recently, new theories, models, sensors and methods are introduced in the ACFM technique which improves the defect detection capability and expands the application scope. This paper presents a review of the state-of-the-art in ACFM technology and discusses future development directions. The paper aims to provide a roadmap for future research and development in the ACFM field. In the basic theory, the ACFM signal forward and the defect inverse problems have been studied by many researchers using new methods and techniques. New excitation modes and detection sensors have been developed to extend the scope of ACFM technology. With the growing demand for specialized detections and evaluation requirements, the ACFM technology has been increasingly applied in offshore, nuclear power, rail transport, and special equipment fields. The critical challenges and areas for further research are discussed in the paper. Based on the literature review and current industrial needs, it is evident that ACFM has entered a stage of rapid and mature development. Additionally, ACFM has given rise to several novel branches in conjunction with other technologies.</div></div>","PeriodicalId":18868,"journal":{"name":"Ndt & E International","volume":"155 ","pages":"Article 103430"},"PeriodicalIF":4.1000,"publicationDate":"2025-05-06","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Recent development of alternating current field measurement technology for defects detection: A review\",\"authors\":\"Xin'an Yuan , Wei Li , Guoming Chen , Xiaokang Yin , Shejuan Xie , Lisha Peng , Yunze He , Xiucheng Liu , Bin Gao , Xiao Li , Xiangyang Wang , Jianming Zhao , Jianchao Zhao , Jianxi Ding , Qinyu Chen\",\"doi\":\"10.1016/j.ndteint.2025.103430\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><div>Alternating current field measurement (ACFM) technology is a promising nondestructive testing (NDT) method with the advantages of non-contact capability, robustness to lift-off effects and quantitative detection. Recently, new theories, models, sensors and methods are introduced in the ACFM technique which improves the defect detection capability and expands the application scope. This paper presents a review of the state-of-the-art in ACFM technology and discusses future development directions. The paper aims to provide a roadmap for future research and development in the ACFM field. In the basic theory, the ACFM signal forward and the defect inverse problems have been studied by many researchers using new methods and techniques. New excitation modes and detection sensors have been developed to extend the scope of ACFM technology. With the growing demand for specialized detections and evaluation requirements, the ACFM technology has been increasingly applied in offshore, nuclear power, rail transport, and special equipment fields. The critical challenges and areas for further research are discussed in the paper. Based on the literature review and current industrial needs, it is evident that ACFM has entered a stage of rapid and mature development. 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Recent development of alternating current field measurement technology for defects detection: A review
Alternating current field measurement (ACFM) technology is a promising nondestructive testing (NDT) method with the advantages of non-contact capability, robustness to lift-off effects and quantitative detection. Recently, new theories, models, sensors and methods are introduced in the ACFM technique which improves the defect detection capability and expands the application scope. This paper presents a review of the state-of-the-art in ACFM technology and discusses future development directions. The paper aims to provide a roadmap for future research and development in the ACFM field. In the basic theory, the ACFM signal forward and the defect inverse problems have been studied by many researchers using new methods and techniques. New excitation modes and detection sensors have been developed to extend the scope of ACFM technology. With the growing demand for specialized detections and evaluation requirements, the ACFM technology has been increasingly applied in offshore, nuclear power, rail transport, and special equipment fields. The critical challenges and areas for further research are discussed in the paper. Based on the literature review and current industrial needs, it is evident that ACFM has entered a stage of rapid and mature development. Additionally, ACFM has given rise to several novel branches in conjunction with other technologies.
期刊介绍:
NDT&E international publishes peer-reviewed results of original research and development in all categories of the fields of nondestructive testing and evaluation including ultrasonics, electromagnetics, radiography, optical and thermal methods. In addition to traditional NDE topics, the emerging technology area of inspection of civil structures and materials is also emphasized. The journal publishes original papers on research and development of new inspection techniques and methods, as well as on novel and innovative applications of established methods. Papers on NDE sensors and their applications both for inspection and process control, as well as papers describing novel NDE systems for structural health monitoring and their performance in industrial settings are also considered. Other regular features include international news, new equipment and a calendar of forthcoming worldwide meetings. This journal is listed in Current Contents.