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Hyperfine interactions, structure and magnetic properties of nanocrystalline Co–Fe–Ni alloys prepared by mechanical alloying

E. Jartych, J. K. Żurawicz

2006ennanocrystallineco-fe-nimechanical alloyingmössbauer spectroscopymagnetic properties

Abstract

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This study investigates the mechanical alloying method utilized to prepare nanocrystalline Co50Fe40Ni10, Co52Fe26Ni22, and Co65Fe23Ni12 alloys. X-ray diffraction analysis confirmed that during milling, a Co–Fe-based solid solution with a b.c.c. lattice was formed in the case of Co50Fe40Ni10, while Co–Ni-based solid solutions with an f.c.c. lattice were achieved for Co52Fe26Ni22 and Co65Fe23Ni12 compositions. Additionally, Mössbauer spectroscopy demonstrated comparable values of the average hyperfine magnetic fields across all alloys, measuring 32.17, 32.24, and 31.21 T for Co50Fe40Ni10, Co52Fe26Ni22, and Co65Fe23Ni12 respectively. Magnetization measurements further allowed the determination of the effective magnetic moment, Curie temperature, saturation magnetization, and coercive field for the synthesized alloys. The results indicate that these mechanically synthesized Co–Fe–Ni alloys exhibit desirable properties as soft magnetic materials.

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Cite This Work

@article{779e036b-4dfd-4f8f-8937-74c9d01a84ae,
  title={Hyperfine interactions, structure and magnetic properties of nanocrystalline Co–Fe–Ni alloys prepared by mechanical alloying},
  author={E. Jartych and J. K. Żurawicz},
  year={2006},
  language={en}
}
TY  - JOUR
TI  - Hyperfine interactions, structure and magnetic properties of nanocrystalline Co–Fe–Ni alloys prepared by mechanical alloying
AU  - E. Jartych
AU  - J. K. Żurawicz
PY  - 2006
LA  - en
ER  -

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