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Detection of stress concentration and early plastic deformation by monitoring surface weak magnetic field change

机译:通过监测表面弱磁场变化来检测应力集中和早期塑性变形

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The magnetization upon ferromagnetic samples induced by applied stresses was studied through experiments by using high sensitive magnetic sensors. The stress-magnetic coupling under cyclic tensile stress was studied during slow cyclic loading and fatigue loading process respectively. The monitoring data validated the efficiency of metal magnetic memory testing on identifying stress concentration zones. After the steel samples were stretched into plastic deformation, the surface magnetic fields of them were found reversing their polarities. This phenomenon was first proposed and discussed by introducing the theory of magnetic dipole and dislocation of metallic crystal. Based on that, a nondestructive testing method for monitoring the occurrence of plastic deformation through measuring the surface weak magnetic field changes of ferromagnetic structures was put forward and verified through preliminary experiment.
机译:使用高灵敏度的磁传感器通过实验研究了由施加应力引起的铁磁样品上的磁化强度。在慢循环载荷和疲劳载荷过程中,分别研究了循环拉伸应力下的应力-磁耦合。监测数据验证了金属磁记忆测试在识别应力集中区域方面的效率。将钢样品拉伸成塑性变形后,发现它们的表面磁场反转了其极性。通过引入磁偶极子和金属晶体的位错理论,首次提出并讨论了这种现象。在此基础上,提出了一种通过测量铁磁结构表面弱磁场变化来监测塑性变形发生的无损检测方法,并通过初步实验进行了验证。

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