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Effect of the anisotropic magnetostriction on Terfenol-D based fiber Bragg grating magnetic sensors

机译:各向异性磁致伸缩对基于Terfenol-D的光纤Bragg光栅磁传感器的影响

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In this work, we study the effect of anisotropic magnetostriction on Terfenol-D based fiber Bragg grating magnetic sensors under different types of magneto-mechanical loading. We demonstrate that a Terfenol-D rod is subjected to axial strain also when the magnetic field is perpendicular to the rod axis and as consequence we question the hypothesis of uniaxial behavior that is normally found in the literature for this kind of sensors. In order to address this issue, we propose a calibration model that introduces transverse sensitivity coefficients in good agreement with the experimental data. Moreover, the dependence of the sensitivity coefficients on the magnetic field intensity and mechanical prestress has been retrieved revealing that accurate magnetic measurements are possible only taking into account the transversal magnetostriction of Terfenol D.
机译:在这项工作中,我们研究了在不同类型的磁机械载荷下,各向异性磁致伸缩对基于Terfenol-D的光纤布拉格光栅磁传感器的影响。我们证明,当磁场垂直于Terfenol-D杆时,它也会受到轴向应变,因此,我们质疑这种传感器中通常在文献中发现的单轴行为的假设。为了解决这个问题,我们提出了一个校准模型,该模型引入了与实验数据高度吻合的横向灵敏度系数。此外,已检索到灵敏度系数对磁场强度和机械预应力的依赖性,这表明仅考虑到Terfenol D的横向磁致伸缩才能进行精确的磁测量。

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