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Additional dc magnetic field response of magnetostrictive/piezoelectric magnetoelectric laminates by Lorentz force effect

机译:洛伦兹力效应引起的磁致伸缩/压电磁电层压板的附加直流磁场响应

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摘要

We have discovered that traditional long-type magnetoelectric laminate composite of magnetostrictive Tb[sub 1−x]Dy[sub x]Fe[sub 2−y] and piezoelectric materials possesses additional ability of detecting dc magnetic field, using the product effect of the Lorentz force effect from Terfenol-D metal strips in dc magnetic field applied with an ac electrical current and the piezoelectric effect from piezoelectric material. The output voltage between the two faces of piezoelectric (1−x)Pb(Mg[sub ⅓]Nb[sub ⅔])O₃-xPbTiO₃ single crystal shows a good linear response to applied dc magnetic field of 100-1200 Oe under different ac electrical current inputs (0.4-200 mA). The magnetoelectric coefficient is about ~64.1 mV/T A. The additional dc magnetic field response of magnetostrictive/piezoelectric magnetoelectric laminates driven by Lorentz force makes this composite hopeful for application in coil-free ac/dc magnetic-sensitive sensors. At the same time, for this composite, the additional ability will not affect the primal ability for detecting ac magnetic field.
机译:我们已经发现,利用磁致伸缩的Tb [sub 1-x] Dy [sub x] Fe [sub 2-y]和压电材料的传统长型磁电层压复合材料具有额外的检测直流磁场的能力,利用了Terfenol-D金属带在施加交流电流的直流磁场中的洛伦兹力效应和压电材料的压电效应。压电(1-x)Pb(Mg [sub⅓] Nb [sub⅔])O₃-xPbTiO₃单晶的两个面之间的输出电压在不同的交流电下对100-1200 Oe的施加的直流磁场表现出良好的线性响应电流输入(0.4-200 mA)。磁电系数约为〜64.1 mV / TA。在Lorentz力的作用下,磁致伸缩/压电磁电层压板的附加直流磁场响应使该复合材料有望用于无线圈的ac / dc磁敏传感器。同时,对于这种复合材料,附加能力将不会影响检测交流磁场的原始能力。

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