首页> 外文期刊>Magnetics, IEEE Transactions on >Giant Converse Magnetoelectric Effect in PZT/FeCuNbSiB/FeGa/FeCuNbSiB/PZT Laminates Without Magnetic Bias Field
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Giant Converse Magnetoelectric Effect in PZT/FeCuNbSiB/FeGa/FeCuNbSiB/PZT Laminates Without Magnetic Bias Field

机译:无磁场偏置的PZT / FeCuNbSiB / FeGa / FeCuNbSiB / PZT叠层中的巨大逆磁电效应

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摘要

We reported a giant self-biased converse magnetoelectric (CME) effect in laminated composites consisting of gradedmagnetostrictive FeCuNbSiB/FeGa/FeCuNbSiB layers sandwiched between two electro-parallel-connected PZT piezoelectric plates. The great different magnetic characteristics (such as magnetic permeability and coercivity) in FeGa and nanocrystalline foil FeCuNbSiB result in a large internal magnetic field and remanent piezomagnetic coefficient in FeCuNbSiB/FeGa/FeCuNbSiB, which account for the giant self-biased CME effect. The experimental results show that: 1) a large remanent CME coefficient of mGs cm/V is achieved, which can be used for realizing miniature electrically controlled magnetic flux devices; 2) the dynamic switching of magnetic flux between bistable states in PZT/FeCuNbSiB/FeGa/FeCuNbSiB/PZT through a smaller ac voltage () controlling is realized; and 3) the induced magnetic induction has an excellent linear relationship with applied ac voltage .
机译:我们报道了层压复合材料中的巨大的自偏置逆磁电(CME)效应,该复合材料由梯度磁致伸缩FeCuNbSiB / FeGa / FeCuNbSiB层夹在两个电并联PZT压电板之间组成。 FeGa和纳米晶箔FeCuNbSiB中的巨大磁特性(例如磁导率和矫顽力)导致FeCuNbSiB / FeGa / FeCuNbSiB中较大的内部磁场和剩余的压电系数,这说明了巨大的自偏置CME效应。实验结果表明:1)获得了较大的mGs cm / V的剩余CME系数,可用于实现小型电控磁通量装置; 2)通过较小的交流电压()控制实现PZT / FeCuNbSiB / FeGa / FeCuNbSiB / PZT中双稳态之间磁通量的动态切换; 3)感应磁感应与施加的交流电压具有极好的线性关系。

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