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Formation of the structure and physicomechanical properties of a quasicrystalline Al–Cu–Fe alloy upon plasma spraying

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Abstract

Quasicrystalline coatings prepared under various thermal conditions of spraying have been studied. Initial quasicrystalline powders with dispersion of 10–50 μm were prepared in a low-pressure arc discharge plasma. The coatings have been sprayed on copper rings using a swinging plasmatron. It is found that the increase in the quenching rate of melt droplets increases the chemical homogeneity and leads to formation of nanostructured formations. The precipitation of nanostructured grains (d < 100 nm) in the sprayed alloy leads to an increase in the mechanical characteristics (hardness, deformation, and ductility) and can be considered as an additional factor of hardening of the material.

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Correspondence to A. A. Lepeshev.

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Original Russian Text © A.A. Lepeshev, I.V. Karpov, A.V. Ushakov, 2017, published in Fizika Tverdogo Tela, 2017, Vol. 59, No. 3, pp. 428–432.

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Lepeshev, A.A., Karpov, I.V. & Ushakov, A.V. Formation of the structure and physicomechanical properties of a quasicrystalline Al–Cu–Fe alloy upon plasma spraying. Phys. Solid State 59, 438–442 (2017). https://doi.org/10.1134/S1063783417030210

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  • DOI: https://doi.org/10.1134/S1063783417030210

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