上海交通大学学报(自然版) ›› 2013, Vol. 47 ›› Issue (12): 1948-1956.

• 电工技术 • 上一篇    下一篇

铁磁性导体材料平板远场涡流探伤技术分析

陈佩华,黄平捷,张武波,唐华溢,周泽魁   

  1. (浙江大学 控制科学与工程学系 工业控制技术国家重点实验室,  杭州 310027)
     
  • 收稿日期:2013-04-07
  • 基金资助:
    国家自然科学基金资助项目(50505045),国家教育部博士点基金资助项目(200803350058)
     

Fault Detection by Remote-Field Eddy Current Technique in Ferromagnetic Conductive Plate

CHEN Peihua,HUANG Pingjie,ZHANG Wubo,TANG Huayi,ZHOU Zekui
  

  1. (Department of Control Science & Engineering, Zhejiang University, Hangzhou 310027,  China)
  • Received:2013-04-07

摘要:

介绍了平板远场涡流检测系统的基本结构和基本检测原理.根据检测时系统中磁力线和能量的分布特点,提出了能量凹陷区的概念.利用电磁数值仿真技术,给出了远场涡流检测中导体板无缺陷和有缺陷时,感应线圈处对检测信号起主要作用的方向的磁通密度分布变化特点.对比分析了板中不同深度和不同半径平底孔缺陷对感应线圈处磁通密度分布的不同影响.分析结果表明,因缺陷引起的空间磁通密度分布曲面形状与缺陷形状间有较直观的对应关系.最后,给出了实际平板远场涡流检测实验中,铁板上下表面存在不同尺寸平底孔缺陷时的远场检测信号曲线,显示出缺陷的半径、深度及位置对检测信号的不同影响.


 
 

关键词: 铁磁性导体, 平板远场涡流,  , 磁场分布,  , 探伤

Abstract:

The fundamental structure and the basic detection principle of the plate remote-field eddy current testing system were introduced. According to the distribution characteristics of the magnetic flux and the energy of the testing system, a novel concept related to the hollow area in the energy was proposed. Simulation techniques were used to obtain the distribution characteristics of the magnetic flux density in the direction which mainly influenced the output signal, in the plane where the detection coil was placed, and in the presence or otherwise of a fault in the conductor plate. In particular, the influence of flatbottom hole flaws of varying depths and radii on the magnetic flux density was analyzed. The analysis showed that the change in the magnetic flux density distribution was directly related to the shape of the fault. The test results for low-frequency remote-field signals for the plate were given with hole flaws appearing on the top or bottom of the plate. The test curves showed the different influences of the depth, radius, and location of the flaw on the detection signal for the tested material.
 

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