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High magnetoelectric effect in laminated composites of giant magnetostrictive alloy and lead-free piezoelectric ceramic

机译:巨大磁致伸缩合金与无铅压电陶瓷的层状复合材料中的高磁电效应

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摘要

Magnetoelectric (ME) laminated composites with all phases environmentally friendly were prepared by sandwiching one layer of thickness-polarized (Bi[sub ½]Na[sub ½]TiO₃-(Bi[sub ½]K[sub ½]TiO₃-BaTiO₃ lead-free piezoelectric ceramic disk between two layers of thickness-magnetized Tb[sub 0.3]Dy[sub 0.7]Fe[sub 1.92] giant magnetostrictive alloy disk along the thickness direction. The composites exhibited the maximum ME voltage coefficient of 40.7 mV/Oe with a flat response in the measured frequency range of 0.1−20 kHz under a dc magnetic bias of 5 kOe. The induced ME voltage showed an extremely linear relationship to the applied ac magnetic field with amplitude varying from 3 x 10[sup −5] to 10 Oe over a broad range of dc magnetic bias of 0−5.5 kOe. The high ME effect was analyzed and found to be comparable to most major lead-based ME composites. The present study opens up possibilities for developing green ME devices.
机译:通过将一层厚度极化的(Bi [sub½] Na [sub½] TiO 3-(Bi [sub½] K [sub½] TiO 3 -BaTiO 3铅-在厚度方向上的两层厚度磁化的Tb [sub 0.3] Dy [sub 0.7] Fe [sub 1.92]巨型磁致伸缩合金盘之间的自由压电陶瓷盘,复合材料的最大ME电压系数为40.7 mV / Oe,且在5 kOe的直流磁偏置下,在测得的0.1-20 kHz频率范围内的平坦响应。感应的ME电压与施加的交流磁场呈极线性关系,幅度在3 x 10 [sup -5]至10之间变化在0-5.5 kOe的宽直流磁偏置范围内的Oe。分析发现,高ME效应可与大多数主要的铅基ME复合材料相媲美,从而为开发绿色ME器件开辟了可能性。

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