A new type of highly sensitive strain gage based on microstructured magnetic materials

C. Fosalau, C. Zet, D. Petrisor, C. Damian
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引用次数: 2

Abstract

The paper presents the results obtained after performing an exhaustive study upon the properties of a special category of materials in form of magnetic amorphous microwires (MAWs), in order to reveal their applicability to build sensitive elements for measuring strains and deformations. The study has been directed to the Stressimpedance (SI) effect, a variant of Giant Magnetoimpedance (GMI) effect that occurs in such materials. The goal of the study was to find the optimal conditions for developing a new type of strain gage in order to build a sensitive force measurement device that would be successfully applied in robotic arm control. Following the study, we built a strain gage possessing a gage factor of about 1000 times larger than that of a metallic gage, with a linearity under 1 % for an operating range of ± 200 ppm.
一种基于微结构磁性材料的新型高灵敏度应变计
本文介绍了在对磁性非晶微线(MAWs)形式的一类特殊材料的性质进行详尽研究后获得的结果,以揭示它们在构建测量应变和变形的敏感元件方面的适用性。这项研究的目标是应力阻抗(SI)效应,这是巨磁阻抗(GMI)效应的一种变体,发生在这种材料中。研究的目的是寻找开发新型应变片的最佳条件,以建立一个灵敏的力测量装置,并成功地应用于机器人手臂的控制。在研究之后,我们建立了一个应变计,其应变系数约为金属应变计的1000倍,在±200 ppm的工作范围内线性度低于1%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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