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A Low Frequency Mechanical Transmitter Based on Magnetoelectric Heterostructures Operated at Their Resonance Frequency

机译:基于磁电异质结构的谐振频率的低频机械变送器

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摘要

Magneto-elasto-electric (ME) coupling heterostructures, consisting of piezoelectric layers bonded to magnetostrictive ones, provide for a new class of electromagnetic emitter materials on which a portable (area ~ 16 cm2) very low frequency (VLF) transmitter technology could be developed. The proposed ME transmitter functions as follows: (a) a piezoelectric layer is first driven by alternating current AC electric voltage at its electromechanical resonance (EMR) frequency, (b) subsequently, this EMR excites the magnetostrictive layers, giving rise to magnetization change, (c) in turn, the magnetization oscillations result in oscillating magnetic fields. By Maxwell’s equations, a corresponding electric field, is also generated, leading to electromagnetic field propagation. Our hybrid piezoelectric-magnetostrictive transformer can take an input electric voltage that may include modulation-signal over a carrier frequency and transmit via oscillating magnetic field or flux change. The prototype measurements reveal a magnetic dipole like near field, demonstrating its transmission capabilities. Furthermore, the developed prototype showed a 104 times higher efficiency over a small-circular loop of the same area, exhibiting its superiority over the class of traditional small antennas.
机译:磁-电-电(ME)耦合异质结构由粘结到磁致伸缩层上的压电层组成,提供了一种新型的电磁发射器材料,其上的便携式(面积〜16 cm 2 )频率非常低(VLF)发射机技术可以被开发。拟议的ME发射器的功能如下:(a)压电层首先由交流电以其机电共振(EMR)频率驱动交流电压,(b)随后,该EMR激发磁致伸缩层,从而引起磁化强度变化, (c)反过来,磁化振荡导致振荡磁场。根据麦克斯韦方程,还会产生相应的电场,从而导致电磁场传播。我们的混合型压电-磁致伸缩变压器可以在载波频率上获取包括调制信号在内的输入电压,并通过振荡磁场或磁通量变化进行传输。原型测量结果揭示了一个类似近场的磁偶极子,证明了其传输能力。此外,所开发的原型在相同面积的小圆形环路上显示出10 sup 4 ssup的高效率,显示出其优于传统小型天线的优势。

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