首页> 外文期刊>AIP Advances >Nonlinear multi-fields coupled model of magnetoelectric coefficient and sensitivity in bilayer ME sensor
【24h】

Nonlinear multi-fields coupled model of magnetoelectric coefficient and sensitivity in bilayer ME sensor

机译:双层ME传感器磁电系数和敏感性的非线性多场耦合模型

获取原文
           

摘要

Aiming to design magnetostrictive/piezoelectric asymmetric bilayer laminate structure that is commonly used in magnetoelectric (ME) sensor, a bilayer static nonlinear magneto-mechanical- electro-thermal coupled theoretical model which is about calculating ME coefficient and sensitivity is established. This model is based on the mechanical-electric linear constitutive relation of piezoelectric layer and one-dimension nonlinear thermal-magneto-mechanical constitutive relation of giant magnetostrictive material (GMM), in which the bending deformation caused by asymmetric structure has also been considered. The model shows universal applicability in the magnetostrictive/piezoelectric bilayer ME structure. In order to verify the validity of the model, magnetostrictive Terfenol-D and piezoelectric PZT are selected to constitute bilayer asymmetric ME composite structure sample, whose static ME coefficient is measured under different temperatures and bias magnetic fields. The model is degenerated to the ME coefficient model without stress, which shows a good predicted result being qualitatively and quantitatively consistent with experimental result confirming the validity of the model. Therefore, the nonlinear effects of pre-stress, bias magnetic field and environmental temperature, thickness ratio, as well as different piezoelectric materials on the ME coefficient and sensitivity were systematically investigated with our established model. The predicted result provides a roadway to improve static ME coefficient and sensitivity of devices by selecting different physic fields, materials, and thickness ratio for designing future ME sensors.
机译:旨在设计磁电(ME)传感器通常用于磁电(ME)传感器的磁致伸缩/压电不对称双层层压结构,建立了关于计算ME系数和灵敏度的双层静态非线性磁机电 - 电热耦合理论模型。该模型基于压电层和一维非线性热磁 - 机械本构体 - 机械组成的巨磁致伸缩材料(GMM)的一维非线性热磁 - 机械组成关系,其中还考虑了由不对称结构引起的弯曲变形。该模型在磁致伸缩/压电双层ME结构中显示了通用适用性。为了验证模型的有效性,选择磁致伸缩性萜卷-D和压电PZT来构成双层不对称ME复合结构样品,其静态ME系数在不同的温度和偏置磁场下测量。该模型对ME系数模型退化,没有应力,这表明了良好的预测结果与确认模型的有效性的实验结果定制和定量一致。因此,通过我们建立的模型系统地研究了预应力,偏置磁场和环境温度,厚度比,厚度比以及不同压电材料的非线性效应。预测结果提供了一条道路,通过选择不同的物理领域,材料和厚度比来设计用于设计未来ME传感器的不同物理领域,材料和厚度比来提高静态ME系数和灵敏度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号