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The Role of Surface Topography on Deformation-Induced Magnetization under Inhomogeneous Elastic-Plastic Deformation

机译:表面形貌对非均匀弹性变形下变形诱导磁化的作用

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摘要

It is widely accepted that the magnetic state of a ferromagnetic material may be irreversibly altered by mechanical loading due to magnetoelastic effects. A novel standardized nondestructive testing (NDT) technique uses weak magnetic stray fields, which are assumed to arise from inhomogeneous deformation, for structural health monitoring (i.e., for detection and assessment of damage). However, the mechanical and microstructural complexity of damage has hitherto only been insufficiently considered. The aim of this study is to discuss the phenomenon of inhomogeneous “self-magnetization” of a polycrystalline ferromagnetic material under inhomogeneous deformation experimentally and with stronger material-mechanical focus. To this end, notched specimens were elastically and plastically deformed. Surface magnetic states were measured by a three-axis giant magnetoresistant (GMR) sensor and were compared with strain field (digital image correlation) and optical topography measurements. It is demonstrated that the stray fields do not solely form due to magnetoelastic effects. Instead, inhomogeneous plastic deformation causes topography, which is one of the main origins for the magnetic stray field formation. Additionally, if not considered, topography may falsify the magnetic signals due to variable lift-off values. The correlation of magnetic vector components with mechanical tensors, particularly for multiaxial stress/strain states and inhomogeneous elastic-plastic deformations remains an issue.
机译:众所周度地接受,由于磁性效应,铁磁材料的磁力可以通过机械负荷不可逆地改变。一种新的标准化非破坏性测试(NDT)技术使用弱磁场场,假设从不均匀变形中出现,用于结构健康监测(即,用于检测和评估损坏)。然而,迄今为止,损害的机械和微观结构复杂性仅被考虑不足。本研究的目的是讨论在实验上的非均匀变形下的多晶铁磁性材料的非均匀性“自磁化”的现象,具有较强的材料 - 机械焦点。为此,缺口标本弹性而塑性变形。表面磁力通过三轴巨磁阻(GMR)传感器测量,并与应变场(数字图像相关)和光学地形测量进行比较。据证明,杂散场不会由于磁力弹性效应而完全形成。相反,不均匀的塑性变形导致地形,这是磁场场形成的主要起源之一。另外,如果不考虑,图形可能由于可变升空值而伪造磁信号。磁性矢量分量与机械张量的相关性,特别是对于多轴应力/应变状态和不均匀弹性塑性变形仍然存在问题。

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