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非晶态合金丝巨应力电阻效应的研究
引用本文:鲍丙豪.非晶态合金丝巨应力电阻效应的研究[J].功能材料,2000,31(3):265-266.
作者姓名:鲍丙豪
作者单位:安徽机电学院!安徽芜湖241000
基金项目:安徽省教委自然科学基金,国家非晶微晶工程技术研究中心资助
摘    要:研究了具有近零磁致伸缩系数Fe4.35Co68.15Si12.5B15晶态合金丝在外加压应力作用下显示的巨应力电阻抗效应。比较了Fe4.35Co68.15Si12.5B15非晶材料及具有大磁致伸缩系数的Fe77.5Si7.5B15非晶材料在弯曲应力作用下显示的应力电阻抗效应的异同。仔细胞研究了结果非晶丝两端的电压信号峰峰值与外力,驱动电流Ims及频率f的

关 键 词:钴基金  非晶态合金丝  巨应力电阻抗效应
文章编号:1001-9731(2000)03-0265-02
修稿时间:1999-03-08

A Study of Giant Stress Impedance Effect of Amorphous Alloy Wires
BAO Binghao.A Study of Giant Stress Impedance Effect of Amorphous Alloy Wires[J].Journal of Functional Materials,2000,31(3):265-266.
Authors:BAO Binghao
Affiliation:BAO Binghao (Anhui Institute of Mechanical and Electrical Engineering,Wuhu,241000,China)
Abstract:The giant stress impedance (GSI) effect shown in nearly zero magnetostrictive Fe 4.35 Co 68.15 Si 12.5 B 15 amorphous wire submitted to an external compressive stress is studied in this paper.The difference of GSI effect for Fe 4.35 Co 68.15 Si 12.5 B 15 and Fe 77.5 Si 7.5 B 15 amorphous wires under bending stresses is compared.A careful investigation of the peak-to-peak output voltage signal for Co-based amorphous wire as a function of applied force F,effective driving current I rms and current frequency f is presented.The experimental results show a relative change ratio of the peak to peak output voltage of about 40% induced by an applied force of 6grams for Co-based wire is obtained at a driving current frequency of 200kHz to 250kHz and an effective alternating current intensity 10mA.No GSI effect is observed in FeSiB wire under relative lower frequency and small applied force.
Keywords:saturation magnetostriction  amorphous wire  compressive stress  stress impedance effect  
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