• Infrared Technology
  • Vol. 44, Issue 4, 421 (2022)
Meixiu JIN*, Shihu ZHU, Tong WANG, and Feifei ZHUANG
Author Affiliations
  • [in Chinese]
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    DOI: Cite this Article
    JIN Meixiu, ZHU Shihu, WANG Tong, ZHUANG Feifei. Nondestructive Crack Testing via Infrared Thermal Imaging Using Halogen Lamp Excitation[J]. Infrared Technology, 2022, 44(4): 421 Copy Citation Text show less
    References

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    [4] JIANG Yi, WANG Haitao, CHEN Shuai, et al. Visual quantitative detection of rail surface crack based on laser ultrasonic technology[J].Optik, 2021, 237: 166732.

    [6] YUAN F, YU Y, LIU B, et al. Investigation on velocity effect in pulsed eddy current technique for detection cracks in ferromagnetic material[C]//IEEE Transactions on Magnetics, 2020, 56(9): 3012341.

    [8] XU Changhang, XIE Jing, CHEN Guoming, et al. An infrared thermal image processing framework based on superpixel algorithm to detect cracks on metal surface[J]. Infrared Physics and Technology, 2014, 67:266-272.

    [10] YUAN L, ZHU X, HONG K. Detection of material surface cracks by infrared non-destructive testing[C]//2020 11th International Conference on Prognostics and System Health Management (PHM-2020 Jinan), 2020:DOI:10.1109/PHM-Jinan48558.2020.00114.

    [11] YANG J, WANG W, LIN G, et al. Infrared thermal imaging-based crack

    [14] CHI Wubu, ZHAO Bo, LIU Tao, et al. Infrared thermal imaging detection of debonding defects in carbon fiber reinforced polymer based on pulsed thermal wave excitation[J]. Thermal Science, 2020, 24(6B): 3887 - 3892.

    JIN Meixiu, ZHU Shihu, WANG Tong, ZHUANG Feifei. Nondestructive Crack Testing via Infrared Thermal Imaging Using Halogen Lamp Excitation[J]. Infrared Technology, 2022, 44(4): 421
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