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Numerical studies to signal characteristics with the metal magnetic memory-effect in plastically deformed samples

机译:塑性变形样品中具有金属磁记忆效应的信号特征的数值研究

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摘要

Metal magnetic memory (MMM) is a new non-destructive (NDT) method for inspecting the early damage of ferromagnetic structures using the residual magnetic field (RMF) signals. Our previous experimental research has confirmed that ferromagnetic materials exhibit various RMF features in different deformation stages. This paper presents a 2-Dimensional (2D) numerical study of RMF characteristics of ferromagnetic samples subject to the mechanical deformation. A new criterion is proposed to determine the plastic deformation. Then some parameters are defined to characterize the RMF signal. After that, the dependence of these parameters on the defect width, depth, location, testing position and direction are analyzed. This work is useful for promoting the MMM from a qualitative NDT technique to quantitative technique.
机译:金属磁存储器(MMM)是一种新的非破坏性(NDT)方法,用于使用剩余磁场(RMF)信号检查铁磁结构的早期损坏。我们以前的实验研究已经证实,铁磁材料在不同的变形阶段具有各种RMF特征。本文介绍了受机械变形影响的铁磁样品的RMF特性的二维(2D)数值研究。提出了确定塑性变形的新准则。然后定义一些参数来表征RMF信号。之后,分析这些参数对缺陷宽度,深度,位置,测试位置和方向的依赖性。这项工作对于将MMM从定性NDT技术提升为定量技术非常有用。

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