Magnetic Properties and Applications of Glass-coated Ferromagnetic Microwires

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V. Zhukova
P. Corte-Leon
A. Allue
K. Gondra
M. Ipatov
J. M. Blanco
J. Olivera
A. Zhukov

Abstract

A remarkable magnetic softness and giant magnetoimpedance (GMI) effect at GHz frequency range havebeen observed in glass-coated microwires subjected to appropriate postprocessing. Co-based microwires present higher GMI effect. Insulating and flexible glass-coating allows use of magnetically soft amorphous glass-coated microwires for stresses or temperature monitoring insmartcomposites using free space facility. Such composites with magnetic microwire inclusions can present tunable magnetic permittivity. We report on in-situ the evolution of the transmission and reflection parameters of the polymer containing magnetic microwire inclusions during the polymerization process. A remarkable change of the reflection and transmission in the range of 4-7 GHz upon the matrix polymerization is observed. Observed dependencies are discussed in terms of the effect of the temperature and stresses variation on magnetic properties of glass-coated microwires during the thermoset matrix polymerization. Obtained results are considered as a base for novel sensing technique allowing non-destructive and non-contact monitoring of the composites utilizing ferromagnetic glass-coated microwire inclusions with magnetic properties sensitive to tensile stress and temperature.

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How to Cite
Zhukova, V., Corte-Leon, P., Allue, A., Gondra, K., Ipatov, M., Blanco, J. M., Olivera, J., & Zhukov, A. (2023). Magnetic Properties and Applications of Glass-coated Ferromagnetic Microwires. Advanced Electromagnetics, 12(3), 69–74. https://doi.org/10.7716/aem.v12i3.2240
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Research Articles

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