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Magnetoelectric effects and power conversion efficiencies in gyrators with compositionally-graded ferrites and piezoelectrics

机译:具有成分渐变铁氧体和压电体的回转器的磁电效应和功率转换效率

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Low-frequency/resonance magnetoelectric interactions and power conversion efficiency of magnetoelectric gyrators consisting of compositionally-graded nickel zinc ferrites and lead zirconate titanate with a coil wound around it were proposed and systematically characterized. Grading-induced differences of magnetic moment and remnant magnetization in ferrites with composition of Ni1-xZnxFe2O4 (0 = x = 0.3) can create the desired built-in field to decrease the required bias. The samples were characterized in terms of magnetostriction, low-frequency/resonance and power conversion efficiency with varieties of Zn concentrations, reversal sequence and volume ratio. A maximum PE of 62.9% was achieved in the composite of PZT-NiFe2O4-Ni0.9Zn0.1Fe2O4 at H = 10 Oe with volume ratio n = 0.5 under load R-L = 700 Q. With contribution of the desired built-in field, maximum PE of 60% under zero bias was also achieved in similar conditions. These favorable features open up the possibilities of ME gyrators with grading for promising applications in power electronics, converters and wireless energy harvesters without a sacrifice in device volume and modest rise in magnetomechanical efficiency.
机译:提出并系统表征了由成分梯度的镍锌铁氧体和锆钛酸铅钛酸酯组成的磁电回转器的低频/共振磁电相互作用和功率转换效率。 Ni1-xZnxFe2O4(0 <= x <= 0.3)组成的铁氧体中磁矩和剩余磁化强度的分级感应差异可以创建所需的内置磁场,以降低所需的偏置。样品的磁致伸缩,低频/共振和功率转换效率以及各种锌浓度,反转顺序和体积比进行了表征。 PZT-NiFe2O4-Ni0.9Zn0.1Fe2O4的复合材料在H = 10 Oe且体积比n = 0.5的情况下,在RL = 700 Q的负载下的最大PE达到62.9%。在所需内置场的作用下,最大在类似条件下,零偏压下的PE也达到了60%。这些有利的特性为ME回转器的分级提供了可能性,可用于电力电子设备,转换器和无线能量收集器中的有希望的应用,而无需牺牲设备体积和磁机械效率的适度提高。

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