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首页> 外文期刊>Computers, Materials & Continua >Resonant Magnetoelectric Effect with Strongly Nonlinear Magneto-Elastic Coupling in Magnetoelectric Laminate Composites
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Resonant Magnetoelectric Effect with Strongly Nonlinear Magneto-Elastic Coupling in Magnetoelectric Laminate Composites

机译:磁电层合复合材料中强非线性磁弹性耦合的共振磁电效应

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摘要

Considering the complex strongly nonlinear coupling characteristic of the magnetostrictive strain and magnetization under the excitation of the bias magnetic field and the pre-stress in the giant magnetostrictive material, this paper adopts the nonlinear magnetostrictive constitutive model and the equivalent circuit method to establish a strongly nonlinear resonant magnetoelectric (ME) effect theoretical model for the ME laminate composites compounding by the giant magnetostrictive material and the piezoelectric material. For the L-T mode magnetostric-tive/piezoelectric/magnetostrictive (MPM) ME laminate, the predicted results coincide well with the experiment results of the resonant frequency and the resonant ME field coefficient varying with the external magnetic field when the pre-stress degenerates to zero in our model. The agreement indicates the proposed theoretical model validity. On the basis, we use the theoretical model to forecast the varying characteristic of the resonant ME field coefficient and the resonant frequency effect under the influence of the different bias magnetic field and the pre-stress in ME laminate composites. And we also predict that the resonant ME coefficient and the resonant frequency appear "reversal" with the pre-stress increasing. After that, the influence of the different volume ratio on the ME effect and resonant frequency is analyzed. Particularly, a resonant frequency value not influenced by the volume ratio with increasing bias magnetic or pre-stress occurs. This research can provide theory basis for improving the resonant ME conversion performance and for controlling the resonant frequency under the excitation of the bias conditions (i.e. the bias magnetic field and the pre-stress) for the ME devices (i.e. sensor, transducer, microwave device and so on).
机译:考虑到巨型磁致伸缩材料在偏置磁场和预应力作用下的磁致伸缩应变与磁化强度之间的复杂的强非线性耦合特性,本文采用非线性磁致伸缩本构模型和等效电路方法建立了一个强非线性巨型磁致伸缩材料和压电材料复合的ME层压复合材料的共振磁电(ME)效应理论模型。对于LT模式磁动/压电/磁致伸缩(MPM)ME叠层,预测结果与实验结果吻合得很好,当预应力退化为零时,谐振频率和谐振ME场系数随外部磁场而变化在我们的模型中。该协议表明了所提出的理论模型的有效性。在此基础上,我们使用理论模型预测了ME层压复合材料在不同偏置磁场和预应力作用下的共振ME场系数的变化特性和共振频率效应。并且我们还预测,随着预应力的增加,共振ME系数和共振频率出现“反转”。之后,分析了不同体积比对ME效应和共振频率的影响。特别地,随着偏磁或预应力的增加,出现不受体积比影响的共振频率值。这项研究可以为提高ME设备(传感器,换能器,微波设备)在偏置条件(即偏置磁场和预应力)的激励下改善谐振ME转换性能和控制谐振频率提供理论依据。等等)。

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