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Crystallization and thermomagnetic treatment of a Co-rich Co–Fe–Ni–Zr–B–Cu based nanocomposite alloy

P. R. Ohodnicki, Jr., S. Y. Park

2008ennanocompositemagneticthermomagneticcoercivityproperties

Abstract

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This study investigates the magnetic properties of Co-rich Co–Fe–Ni–Zr–B–Cu based nanocomposite alloys following various thermal-magnetic treatments. The primary objective was to compare the properties of a Co0.85Fe0.15 alloy with those of a similar Co0.88Fe0.12 alloy, analyzing their performance under different annealing conditions. A combination of experimental techniques was employed, focusing on transverse magnetic field annealing and field crystallization processes. The results demonstrated that the Co0.85Fe0.15 alloy exhibited significantly higher anisotropy fields (HK) ranging from 135 to 40 Oe and field induced anisotropies (KU) between 1700 and 2000 J/m³ than the Co0.88Fe0.12 alloy, which showed lower coercivities (HC) at 3 kHz. Notably, the field annealed amorphous alloy showcased competitive magnetic properties compared to its field crystallized counterpart, leading to enhanced understanding and optimization of magnetic behavior in Co-rich nanocomposites. This research advances foundational knowledge crucial for the engineering of magnetic materials with tailored performance characteristics.

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Cite This Work

@article{a74edaa5-def6-4d08-8deb-fb41054683eb,
  title={Crystallization and thermomagnetic treatment of a Co-rich Co–Fe–Ni–Zr–B–Cu based nanocomposite alloy},
  author={P. R. Ohodnicki and Jr. and S. Y. Park},
  year={2008},
  language={en}
}
TY  - JOUR
TI  - Crystallization and thermomagnetic treatment of a Co-rich Co–Fe–Ni–Zr–B–Cu based nanocomposite alloy
AU  - P. R. Ohodnicki
AU  - Jr.
AU  - S. Y. Park
PY  - 2008
LA  - en
ER  -

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