首页> 外文会议>European Conference on Non-Destructive Testing >Residual Magnetic Field Sensing for Stress Measurement and Defect Detection
【24h】

Residual Magnetic Field Sensing for Stress Measurement and Defect Detection

机译:应力测量和缺陷检测的残余磁场感测

获取原文

摘要

The evaluation of both applied and residual stresses in engineering structures to provide early indications of stress status and eventual failure is a fast growing area in non-destructive testing. Much work has been done in recent years in the development of magnetic stress measurement techniques for ferromagnetic materials using applied magnetic fields to monitor changes in the magnetic properties of materials, such as variations in the hysteresis curve or Barkhausen emission. But the area of passive field measurement is relatively unexplored. When magnetic metals are strained, they irreversibly transformed from a non-magnetic state to a magnetic state, this is referred to as metal magnetic memory (MMM) or the residual magnetic field. This paper investigates the phenomena under different circumstances and applies the residual magnetic field technique to stress measurement. A three axis magneto-resistive magnetic field sensor is used to measure the residual magnetic fields (RMF) parallel to the applied stress and the material surface (Bx) and perpendicular to the material surface (Bz), generated by the magneto-mechanical effect without the application of an external field, using steel samples exposed to stresses. The test results show that without using an applied field, the stresses in a sample can be measured using magnetic field sensing, with Bx showing particularly good correlation. The work concludes that the novel passive field technique including analysis of the magnetic field pattern and magnetic field variation rate, would prove advantageous in certain circumstances, for example in-service inspection of structures with complex geometries. Further research directions are also highlighted.
机译:在工程结构既应用于和残余应力的评价提供的应力状态和最终失效是在非破坏性测试一个快速增长的领域的早期迹象。很多工作已经在最近几年已经完成在磁应力测量技术的发展,使用施加的磁场,以监测材料的磁特性,改变的铁磁材料,例如在滞后曲线或巴克豪森发射的变化。但被动实地测量的面积相对未开发。当磁性金属是应变的,它们不可逆地从非磁性状态的磁性状态变换,这被称为金属磁存储器(MMM)或残余磁场。本文研究在不同情况下的现象和剩余磁场技术适用于应力测量。三轴磁阻磁场传感器被用于测量剩余磁场(RMF)平行于所施加的应力和材料表面(BX)和垂直于材料表面(BZ),由所述磁 - 机械效应产生不外部场的应用程序,使用暴露于应力钢试样。试验结果表明,在不使用外加场,在样品中的应力可以通过使用磁场感测,以Bx的显示特别良好的相关性测量。的工作的结论是,新颖被动场技术包括磁场图案和磁场变化速率的分析,将证明在某些情况下是有利的,例如在服务具有复杂几何形状结构的检查。进一步的研究方向进行了强调。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号