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    阵列涡流成像技术数值仿真及应用

    周建平, 安海春, 白小宝, 江运喜

    周建平, 安海春, 白小宝, 江运喜. 阵列涡流成像技术数值仿真及应用[J]. 无损检测, 2014, 36(12): 42-45.
    引用本文: 周建平, 安海春, 白小宝, 江运喜. 阵列涡流成像技术数值仿真及应用[J]. 无损检测, 2014, 36(12): 42-45.
    ZHOU Jian-ping, AN Hai-chun, BAI Xiao-bao, JIANG Yun-xi. The Numerical Simulation and Applications of Eddy Current Arraty Imaging Technology[J]. Nondestructive Testing, 2014, 36(12): 42-45.
    Citation: ZHOU Jian-ping, AN Hai-chun, BAI Xiao-bao, JIANG Yun-xi. The Numerical Simulation and Applications of Eddy Current Arraty Imaging Technology[J]. Nondestructive Testing, 2014, 36(12): 42-45.

    阵列涡流成像技术数值仿真及应用

    基金项目: 

    周建平(1965-), 男, 高级工程师, 主要从事无损检测工艺研究。

    详细信息
    • 中图分类号: TG115.28

    The Numerical Simulation and Applications of Eddy Current Arraty Imaging Technology

    • 摘要: 阵列涡流检测技术可以根据工件外形来设计探头, 检测方式灵活多变, 并能将检测结果成像显示, 成为了涡流检测的发展趋势。数值仿真方法可以对实际检测情形进行模拟, 辅助检测工艺的制定, 提高检测的准确性。
      Abstract: As the eddy current array testing technology can design probes according to the shape of the test piece and possesses detection flexibility detect flexibly and imaging display of testing result, so it becomes the trend of eddy current testing. Numerical simulation method can simulate the actual test cases, help to establish the detection technology and improve the accuracy of testing.
    • [1] 赵磊. 阵列涡流无损检测技术的研究及进展[J].无损探伤, 2009, 33(2):22-25.
      [2] 徐可北. 涡流阵列检测技术[J]. 冶金分析, 2004, 24(z2):645-647.
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    出版历程
    • 收稿日期:  2014-06-24

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