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High sensitive nonlinear modulation magnetoelectric magnetic sensors with a magnetostrictive metglas structure based on bell-shaped geometry

机译:基于钟形几何形状的磁致伸缩金属结构的高灵敏度非线性调制磁电传感器

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摘要

In this paper both linear and nonlinear magnetoelectric (ME) effects have been investigated intensively. In order to obtain magnetic amplification, we fabricated 3 multi-push-pull mode magnetoelectric laminated composites metglas/PMNT/metglas based on dumbbell-shaped metglas. The linear magnetoelectric charge coefficient is enhanced to 2600 pC/Oe at 2 Hz based on dumbbell-shaped metglas and it increases as the end-flange width of the dumbbell-shaped metglas increases at 2 Hz, respectively. Based on these 3 ME composites, we establish an active mode nonlinear modulation system for ME magnetic sensor, the sensitivity of which are enhanced to 80,100 and 102 pT/(Hz)~(1/2) at 1 Hz for the composites with the end-flange width 20, 15 and 10 mm, respectively, via nonlinear ME modulation method. Strain distribution simulations illustrate the theoretically accurate amplification of the dumbbell-shaped geometry. The center strains of 3 dumbbell-shaped metglas decrease as the width of end-flanges decreases.
机译:在本文中,已经对线性和非线性磁电(ME)效应进行了深入研究。为了获得磁放大,我们在哑铃形的金属玻璃的基础上,制造了3种多推挽式磁电叠层复合材料金属玻璃/ PMNT /金属玻璃。基于哑铃形的梅格拉斯,线性磁电荷系数在2 Hz时提高到2600 pC / Oe,并且随着哑铃形梅格拉斯的端部法兰宽度在2 Hz处增加而增加。基于这3种ME复合材料,我们建立了一种用于ME磁传感器的有源模式非线性调制系统,对于1Hz复合材料,其灵敏度在1 Hz时提高到80,100和102 pT /(Hz)〜(1/2) -法兰宽度20、15和10 mm,分别通过非线性ME调制方法实现。应变分布模拟说明了哑铃形几何结构的理论上精确的放大。 3个哑铃形梅格拉玻璃的中心应变随着端部法兰宽度的减小而减小。

著录项

  • 来源
    《Journal of magnetism and magnetic materials》 |2016年第5期|225-230|共6页
  • 作者单位

    Key Laboratory of Inorganic Functional Material and Device, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 201800, China,University of Chinese Academy of Sciences, Beijing 100049, China;

    Key Laboratory of Inorganic Functional Material and Device, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 201800, China;

    Key Laboratory of Inorganic Functional Material and Device, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 201800, China,University of Chinese Academy of Sciences, Beijing 100049, China;

    Key Laboratory of Inorganic Functional Material and Device, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 201800, China;

    Key Laboratory of Inorganic Functional Material and Device, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 201800, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    dumbbell-shape; nonlinear magnetoelectric; magnetostrictive; piezoelectric; metglas; PMNT;

    机译:哑铃形非线性磁电磁致伸缩压电梅格拉斯PMNT;

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