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Magnetic shape anisotropy effect on sensing performance and directional sensitivity in magnetostrictive nickel patch transducer

机译:磁形状各向异性对磁致伸缩镍贴片换能器传感性能和方向灵敏度的影响

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This article presents the magnetic shape anisotropy effect on sensing performance and directional sensitivity in a directional magnetostrictive patch transducer using a uniaxial comb-shaped nickel patch, for the use of ultrasonic guided Lamb wave technology in metallic planar structure. The uniaxial comb patch was modified from a disc-shaped patch made of polycrystalline nickel, so that its comb fingers were aligned to a specific radial direction to promote the magnetic shape anisotropy in the nickel patch. Previously, it was found that a magnetostrictive patch transducer using a nickel disc patch appeared to have omnidirectional sensitivity for sensing guided Lamb waves in an aluminum plate due to the isotropic magnetostrictive nature of polycrystalline nickel. In this work, we initially investigated a theoretical approach to determine demagnetization factor change caused by the geometrical shape modification of a nickel patch, which strongly correlated with a specific magnetization characteristic of the patch. Then, experimental guided Lamb wave analysis was followed to demonstrate the directional guided Lamb wave sensitivity of magnetostrictive patch transducers using nickel patches with three different geometrical configurations. We verified from the experimental guided Lamb wave testing that the proposed magnetostrictive patch transducer using the uniaxial comb-shaped nickel patch exhibited excellent directional sensitivity along the comb fingers' orientation in the aluminum plate.
机译:本文介绍了使用单轴梳状镍贴片的定向磁致伸缩贴片换能器中的磁形状各向异性对传感性能和方向灵敏度的影响,该超声换能器在金属平面结构中使用了超声波引导的Lamb波技术。单轴梳状贴片由多晶镍制成的圆盘形贴片修饰而成,因此其梳状指与特定的径向方向对齐,以促进镍贴片中的磁形状各向异性。以前,已经发现,由于多晶镍的各向同性磁致伸缩特性,使用镍圆盘贴片的磁致伸缩贴片换能器似乎具有全向灵敏度,可以感应铝板中的导引兰姆波。在这项工作中,我们最初研究了一种确定由镍贴片的几何形状修改引起的退磁因子变化的理论方法,该变化与贴片的特定磁化特性密切相关。然后,进行了实验引导的兰姆波分析,以证明使用具有三种不同几何构型的镍贴片的磁致伸缩贴片换能器的定向兰姆波定向灵敏度。我们从Lamb波引导实验中验证了所提出的使用单轴梳状镍片的磁致伸缩贴片换能器在铝板上沿梳指的方向表现出优异的方向敏感性。

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