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Research Article

Pulsed eddy current array design and electromagnetic imaging for defects detection in metallic materials

, , , &
Pages 81-99 | Received 12 Aug 2020, Accepted 23 Mar 2021, Published online: 08 Apr 2021
 

ABSTRACT

Defects caused by a harsh working environment and cyclic loading may seriously lead to catastrophic industrial accidents. Therefore, an efficient and accurate detection method is needed to quantitatively characterise the multiple defects of large-area metal components. In this paper, a pulsed eddy current (PEC) array is designed by considering mutual electromagnetic influence between the PEC array; the differential peak values at different scan positions are abstracted as feature signals for defect characterisation, and the relationship between defect width and detection signal is discovered; the detection capability of sensor array for adjacent defects is analysed. Subsequently, the electromagnetic imaging is applied to visualise and quantitatively evaluate the multiple defects, and then, the quantitative detection approaches for the localisation and width of multiple defects in metal components are proposed. An experimental setup is built and the proposed approach is validated by experiment. The results show that the proposed method can effectively determine the locations and widths of defects in metal components within the absolute error of 1 scan step.

Disclosure statement

No potential conflict of interest was reported by the author(s).

Additional information

Funding

The authors would like to acknowledge the financial support received from the Nature Science Foundation of Guangdong Province [Grant number is 2018A030313893], the Fundamental Research Funds for the Central Universities [Grant number is ZYGX2018J067] and the National Nature Science Foundation of China [Grant number is 61960206010 and 61527803, respectively].

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