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Optimization of Magnetic Properties of Magnetic Microwires by Post-Processing

Authors :
Física de materiales
Física aplicada I
Materialen fisika
Fisika aplikatua I
Zhukova Zhukova, Valentina
Corte León, Paula
González Legarreta, Lorena
Talaat Farag Ibrahim Eladawi, Ahmed
Blanco Aranguren, Juan María
Ipatov, Mihail
Olivera, Jesús
Zhukov Egorova, Arkady Pavlovich
Física de materiales
Física aplicada I
Materialen fisika
Fisika aplikatua I
Zhukova Zhukova, Valentina
Corte León, Paula
González Legarreta, Lorena
Talaat Farag Ibrahim Eladawi, Ahmed
Blanco Aranguren, Juan María
Ipatov, Mihail
Olivera, Jesús
Zhukov Egorova, Arkady Pavlovich
Publication Year :
2020

Abstract

The influence of post-processing conditions on the magnetic properties of amorphous and nanocrystalline microwires has been thoroughly analyzed, paying attention to the influence of magnetoelastic, induced and magnetocrystalline anisotropies on the hysteresis loops of Fe-, Ni-, and Co-rich microwires. We showed that magnetic properties of glass-coated microwires can be tuned by the selection of appropriate chemical composition and geometry in as-prepared state or further considerably modified by appropriate post-processing, which consists of either annealing or glass-coated removal. Furthermore, stress-annealing or Joule heating can further effectively modify the magnetic properties of amorphous magnetic microwires owing to induced magnetic anisotropy. Devitrification of microwires can be useful for either magnetic softening or magnetic hardening of the microwires. Depending on the chemical composition of the metallic nucleus and on structural features (grain size, precipitating phases), nanocrystalline microwires can exhibit either soft magnetic properties or semi-hard magnetic properties. We demonstrated that the microwires with coercivities from 1 A/m to 40 kA/m can be prepared.

Details

Database :
OAIster
Notes :
This research was funded by Spanish MCIU under PGC2018-099530-B-C31 (MCIU/AEI/FEDER, UE), by the Government of the Basque Country under PIBA 2018-44 and Elkartek (CEMAP and AVANSITE) projects and by the University of Basque Country under the scheme of “Ayuda a Grupos Consolidados” (Ref.: GIU18/192)., English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1202406762
Document Type :
Electronic Resource