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Nonlinear resonance converse magnetoelectric effect modulated by voltage for the symmetrical magnetoelectric laminates under magnetic and thermal loadings

机译:磁和热载荷作用下对称磁电层压板的电压调制非线性共振逆磁电效应

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摘要

Based on the tri-layer symmetrical magnetoelectric laminates, a equivalent circuit for the nonlinear resonance converse magnetoelectric coupling effect is established. Because the nonlinear thermo-magneto-mechanical constitutive equations of magnetostrictive material were introduced, a converse magnetoelectric coefficient model was derived from the equivalent circuit, which can describe the influence of bias electric field, bias magnetic field and ambient temperature on the resonance converse magnetoelectric coupling effect. Especially, the model can well predict the modulation effect of bias electric field/voltage on the magnetism of magnetoelectric composite or the converse magnetoelectric coefficient, which is absolutely vital in applications. Both of the converse magnetoelectric coefficient and the resonance frequency predicted by the model have good agreements with the existing experimental results in qualitatively and quantitatively, and the validity of the model is confirmed. On this basis, according to the model, the nonlinear trends of the resonance converse magnetoelectric effect under different bias voltages, bias magnetic fields and ambient temperatures are predicted. From the results, it can be found that the bias voltage can effectively modulate the curve of the resonance converse magnetoelectric coefficient versus bias magnetic field, and then change the corresponding optimal bias magnetic field of the maximum converse magnetoelectric coefficient; with the increasing volume ratio of piezoelectric layers, the modulation effect of bias voltage becomes more obvious; under different bias magnetic fields, the modulation effect of bias voltage on the converse magnetoelectric effect has nonvolatility in a wide temperature region.
机译:基于三层对称磁电层合板,建立了非线性共振逆磁电耦合效应的等效电路。由于引入了磁致伸缩材料的非线性热磁机械本构方程,从等效电路推导了逆磁电系数模型,该模型可以描述偏置电场,偏置磁场和环境温度对共振逆磁电耦合的影响。影响。特别是,该模型可以很好地预测偏置电场/电压对磁电复合材料的磁性或逆磁电系数的调制效果,这在应用中绝对至关重要。该模型预测的逆磁电系数和共振频率在定性和定量上均与现有实验结果吻合良好,证实了模型的有效性。在此基础上,根据模型,预测了不同偏置电压,偏置磁场和环境温度下共振逆磁电效应的非线性趋势。从结果可以看出,偏置电压可以有效地调制谐振逆磁电系数与偏置磁场的关系曲线,进而改变最大逆磁电系数的相应最优偏置磁场。随着压电层体积比的增加,偏压的调制效果变得更加明显。在不同的偏置磁场下,偏置电压对逆磁电效应的调制效应在较宽的温度范围内具有非易失性。

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