Abstract

FeCo/Al2O3 nanoparticles thermal sprayed on a steel plate with different Co concentration from 0 to 20% by means of a thermal spraying process, Fe60−xCox(Al2O3)40 powder alloy was synthesized using planetary ball mill for different Co concentration at 20 h of milling. The aims of this work are to study the effect of Co concentration and milling time on the magnetic, structural behavior and mechanical properties of the FeCo/Al2O3 coating. Appearance of FeCo magnetic Solid solution phase after 20 h of milling, the crystallite sizes reduced from 18nm to 7nm and lattice strains increased from 0.36 to 0.56%, this variation are caused by the diffusion of Co atoms in iron lattice. For the coating, various phase of magnetic domains observed on surface by Atomic Force Microscopy (AFM), apparition the new phases, Al2FeO4 at 0%, CoAl2O4 at 5%, CoFe2O4 at 10% and CoFe at 20%. Saturation magnetization is max at 20 wt% of Ni and coercivity is min at 10 wt% of Co. Microhardeness and Young module were characterized by Nanoidentation techniques that shows an improvement in mechanical properties

Highlights

  • Structural, Morphological and Magnetic Properties of Fe60−xCox(Al2O3)[40] Nanocomposite Coating Deposited by Thermal Spraying †

  • FeCo/Al2O3 nanoparticles thermal sprayed on a steel plate with different Co concentration from 0 to 20% by means of a thermal spraying process, Fe60−xCox(Al2O3)[40] powder alloy was synthesized using planetary ball mill for different Co concentration at 20 h of milling

  • Various phase of magnetic domains observed on surface by Atomic Force Microscopy (AFM), apparition the new phases, Al2FeO4 at 0%, CoAl2O4 at 5%, CoFe2O4 at 10% and CoFe at 20%

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Summary

Introduction

Structural, Morphological and Magnetic Properties of Fe60−xCox(Al2O3)[40] Nanocomposite Coating Deposited by Thermal Spraying † Abderrahmane Younes 1,2,*, Nacer Dilmi 2 and Amirouche Bouamer 1

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