Published January 10, 2025 | Version v1

Effect of Temperature on Magnetoimpedance Effect and Magnetic Properties of Fe- and Co-Rich Glass-Coated Microwires

  • 1. ROR icon Institute of Experimental Physics of the Slovak Academy of Sciences
  • 2. University of the Basque Country, UPV/EHU
  • 3. UPV/EHU
  • 4. ROR icon Ikerbasque

Description

We provide new experimental studies of the temperature dependence of the giant magnetoimpedance (GMI) effect and hysteresis loops of Fe-rich and Co-rich amorphous microwires with rather different room temperature magnetic properties and GMI effect features. We observed a remarkable modification of hysteresis loops and magnetic field dependence of the GMI ratio upon heating in both of the studied samples. We observed a noticeable improvement in the GMI ratio and a change in hysteresis loops from rectangular to inclined upon heating in Fe-rich microwire. However, the opposite trend was observed in Co-rich microwire, in which, upon heating, the shape of the hysteresis loop changed from linear to rectangular. Generally, the evolution of the shape of the hysteresis loops during heating correlates with the modification of the dependencies of the GMI ratio ΔZ/Z on the magnetic field. For Co-rich microwire, the double-peak magnetic field dependence changed to single-peak, while for Fe-rich microwire, the opposite tendency was observed. The origin of the observed temperature dependences of the hysteresis loop and the GMI effect is discussed, considering internal stresses’ relaxation during heating, the temperature dependencies of the magnetostriction coefficient, and internal stresses, as well as the Hopkinson effect.

Files

Corte-Leon et al._2025_EffectOfTemperatureOnMagnetoimpedance.pdf

Files (4.1 MB)

Additional details

Funding

European Commission
HARMONY - Holistic Approach to enhance the Recyclability of rare-earth permanent Magnets Obtained from aNY waste stream 101138767

Dates

Accepted
2025-01-07