首页> 外文期刊>Sensors and Actuators, A. Physical >Dimension effects of a magnetoelectric gyrator with FeCoSiB/Pb(Zr,Ti)O-3 layered composites core for efficient power conversion
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Dimension effects of a magnetoelectric gyrator with FeCoSiB/Pb(Zr,Ti)O-3 layered composites core for efficient power conversion

机译:磁电旋转器与FeCosib / Pb(Zr,Ti)O-3层状复合材料核心的尺寸效应,用于有效功率转换

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A Magneto-Electric (ME) gyrator with a superior power efficiency of 95 % has been achieved based on a two-phase solid-state ME laminate. This ME gyrator consists of a winding coil that generates a magnetic field as the first step to realize electromagnetic energy transfer. A magneto-electric composite, serving as the second step, then converts the power from magnetic to electric forms. The laminate consists of two iron-cobalt based amorphous alloy layers bonded to a lead zirconate titanate plate. It has a giant magneto-electric coefficient of around 2200 (V/cm)/Oe at its mechanical resonant frequency (approximate to 44 kHz) in structure. Approaching methods based on maximum power transfer (MPT) efficiency theory and the equivalent loss factor (ELF) from the input port have been introduced to evaluate the power efficiency of the ME gyrator. The expected MPT efficiency is 96.5 % at a power volume density of 0.1 W/in(3) (6.1 mWatt/cm(3)), and 93.2 % up to 20 W/in(3) (1.22 W/cm(3)). The ELF explains that the magnetomechanical conversion efficiency is related to the volume of the magnetic phase which is the dominating term in the power efficiency. (C) 2019 Elsevier B.V. All rights reserved.
机译:用95%的优异的功率效率磁电(ME)回转器已经实现基于两相的固态ME层叠体。这个ME回转器由产生的磁场作为第一步骤,实现电磁能量转移绕组线圈的。磁电复合物,作为第二步骤,然后把从磁电动形式的功率。层压材料包括键合到锆钛酸铅板两个基于铁 - 钴非晶质合金层。它有2200左右(V / cm)的一个巨大的磁电系数/奥斯特在结构其机械共振频率(近似44千赫)。接近基于最大功率传输(MPT)效率的理论和从输入端口等效损耗因子(ELF)的方法已被引入以评估ME回转器的功率效率。预期MPT效率在0.1瓦的功率体积密度/ 96.5%(3)(6.1 mWatt /厘米(3)),和93.2%到20 W /(3)(1.22瓦/厘米(3) )。所述ELF解释说,磁转换效率相关的磁性相,其是在功率效率的主导术语的体积。 (c)2019 Elsevier B.v.保留所有权利。

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