Magnetoelectric effect in amorphous FeNiSiC ferromagnet-piezoelectric planar structures

被引:0
|
作者
L. Y. Fetisov
Y. K. Fetisov
N. S. Perov
D. V. Chashin
机构
[1] Moscow State University,
[2] Moscow Institute of Radio Engineering Electronics,undefined
[3] and Automation (Technical University),undefined
来源
Technical Physics | 2011年 / 56卷
关键词
Piezoelectric Layer; Magnetoelectric Effect; Disk Resonator; Ribbon Plane; Electric Energy Generator;
D O I
暂无
中图分类号
学科分类号
摘要
The magnetoelectric (ME) effect is studied in composite two- and three-layer disk structures containing magnetostriction layers of an amorphous FeNiSiC ferromagnet and a lead zirconate titanate piezoelectric layer. Due to a high magnetostriction (∼33 × 10−6) and a low saturation field (∼200 Oe), an FeNiSiC layer has a high piezomagentic coefficient, which results in an effective ME coupling in low fields (∼25 Oe). The ME effect is ∼0.2 V cm−1 Oe−1 at a low frequency and increases to 11.9 and 13.2 V cm−1 Oe−1 when bending and in-plane mechanical vibrations are excited in a resonance manner in the structures at frequencies of ∼8.2 and ∼170.0 kHz, respectively. Structures containing amorphous FeNiSiC layers are promising for magnetic field transducers and electric energy generators and converters.
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页码:485 / 490
页数:5
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