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Sensor Applications of Soft Magnetic Materials Based on Magneto-Impedance Magneto-Elastic Resonance and Magneto-Electricity

机译:基于磁阻磁弹性共振和磁电的软磁材料传感器应用

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摘要

The outstanding properties of selected soft magnetic materials make them successful candidates for building high performance sensors. In this paper we present our recent work regarding different sensing technologies based on the coupling of the magnetic properties of soft magnetic materials with their electric or elastic properties. In first place we report the influence on the magneto-impedance response of the thickness of Permalloy films in multilayer-sandwiched structures. An impedance change of 270% was found in the best conditions upon the application of magnetic field, with a low field sensitivity of 140%/Oe. Second, the magneto-elastic resonance of amorphous ribbons is used to demonstrate the possibility of sensitively measuring the viscosity of fluids, aimed to develop an on-line and real-time sensor capable of assessing the state of degradation of lubricant oils in machinery. A novel analysis method is shown to sensitively reveal the changes of the damping parameter of the magnetoelastic oscillations at the resonance as a function of the oil viscosity. Finally, the properties and performance of magneto-electric laminated composites of amorphous magnetic ribbons and piezoelectric polymer films are investigated, demonstrating magnetic field detection capabilities below 2.7 nT.
机译:选定的软磁材料的出色性能使其成为构建高性能传感器的成功候选者。在本文中,我们基于软磁材料的磁特性与其电或弹性特性的耦合,介绍了有关不同传感技术的最新工作。首先,我们报告了多层夹层结构中坡莫合金膜厚度对磁阻响应的影响。在最佳条件下,施加磁场后阻抗变化为270%,场灵敏度低至140%/ Oe。其次,非晶带的磁弹性共振用于证明灵敏地测量流体粘度的可能性,旨在开发一种能够评估机械中润滑油降解状态的在线实时传感器。示出了一种新颖的分析方法,该方法灵敏地揭示了共振时磁弹性振荡的阻尼参数随油粘度的变化。最后,研究了非晶态磁条和压电聚合物薄膜的磁电叠层复合材料的性能和性能,证明了低于2.7 nT的磁场检测能力。

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