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首页> 外文期刊>The European physical journal. Applied physics >Modeling and magnetoelectric properties of laminate composite of nickel plate and piezoelectric multilayer vibrator
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Modeling and magnetoelectric properties of laminate composite of nickel plate and piezoelectric multilayer vibrator

机译:镍板和压电多层振子的叠层复合材料的建模和磁电性能

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摘要

A magnetoelectric theoretical model combing piezoelectric and piezomagnetic parts about the longitudinal vibration was proposed for the laminate composite based on equivalent circuit. The model shows that the magnetoelectric voltage is relative to the thickness ratio, total thickness, frequency and loss. A simple laminate magnetoelectric composite was prepared by bonding a nickel plate and a multilayer piezoelectric vibrator together for the experimental research. The multilayer vibrator enjoys high capacitance, large effective area and low thickness, leading to a high magnetic field sensitivity of 1 mOe at the magnetoelectric field coefficient of 2.58 V/cmOe in the simple composite with nickel thickness of 0.2 mm. The model fits the resonance frequency well with the experimental results. Numerical calculation well predicates the magnetoelectric experimental behaviors, presenting a magnetoelectric maximum at about the thickness ratio 0.3 between the nickel plate and multilayer vibrators. This approach provides a method for the magnetoelectric application.
机译:提出了一种基于等效电路的压电复合材料和压电材料围绕纵向振动的磁电理论模型。该模型表明,磁电电压与厚度比,总厚度,频率和损耗有关。通过将镍板和多层压电振子粘结在一起,制备了一种简单的层压磁电复合材料,用于实验研究。多层振子具有高电容,大有效面积和低厚度的特点,在镍厚度为0.2 mm的简单复合材料中,在2.58 V / cmOe的磁电场系数下,其磁场灵敏度为1 mOe。该模型与实验结果非常吻合。数值计算很好地预测了磁电实验行为,在镍板和多层振子之间的厚度比约为0.3时呈现出磁电最大值。该方法提供了一种用于磁电应用的方法。

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