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Magnetic field SAW sensors based on magnetostrictive-piezoelectric layered structures: FEM modeling and experimental validation

机译:基于磁致伸缩压电分层结构的磁场声表面波传感器:有限元建模和实验验证

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摘要

This study describes the numerical implementation of accurate and fully coupled physical models in order to investigate the sensitivity of Surface Acoustic Wave (SAW) devices using the magnetoelastic interaction with an external magnetic field. The model was first validated using experimental data previously published by Kadota et al. obtained with SAW resonators based on quartz substrates and nickel Inter Digital Transducers (IDTs). The model was then used to optimize the geometry of a new magnetostrictive-piezoelectric layered structure (Ni/ZnO/IDT/LiNbO3), regarding its sensitivity to the magnetic field intensity. The optimized structure was designed and fabricated and experimental results show a good correlation with the numerical modeling. Simulations also show that if alumina is used instead of ZnO, the Ni/Al2O3/IDT/LiNbO3 structure exhibits a sensitivity that is 9 times higher than the one based on ZnO. (C) 2016 Elsevier B.V. All rights reserved.
机译:这项研究描述了精确且完全耦合的物理模型的数值实现,以便研究利用磁弹性与外部磁场相互作用的表面声波(SAW)设备的灵敏度。该模型首先使用Kadota等人先前发表的实验数据进行验证。使用基于石英基板和镍互数字换能器(IDT)的SAW谐振器获得。考虑到其对磁场强度的敏感性,该模型随后用于优化新型磁致伸缩压电层状结构(Ni / ZnO / IDT / LiNbO3)的几何形状。设计并制造了优化的结构,并且实验结果与数值模型具有良好的相关性。模拟还表明,如果使用氧化铝代替ZnO,则Ni / Al2O3 / IDT / LiNbO3结构的灵敏度比基于ZnO的灵敏度高9倍。 (C)2016 Elsevier B.V.保留所有权利。

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