Role of a Carbon-Fluorine-Containing Additive in the Formation of the Structure, Defect Substructure, and Fracture Surface of an Electric Arc Sprayed Coating

Author:

Kryukov R. E.,Gromov V. E.,Ivanov Yu. F.,Kozyrev N. A.,Shlyarova Yu. A.

Publisher

Pleiades Publishing Ltd

Subject

Metals and Alloys

Reference20 articles.

1. E. V. Kapralov, S. V. Raikov, E. A. Budovskikh, V. E. Gromov, E. S. Vashchuk, and Yu. F. Ivanov, “Structure, phase composition, and properties of surfacing formed on steel by electric arc method,” Fundam. Probl. Sovr. Materialoved. 11 (3), 334–339 (2014).

2. V. E. Gromov, E. V. Kapralov, S. V. Raikov, Yu. F. Ivanov, and E. A. Budovskikh, “Structure and properties of wear-resistant coatings deposited by the electric arc method on steel with flux-cored electrodes,” Usp. Fiz. Met. 15, 211–232 (2014).

3. R. Li, D. Y. He, Z. Zhou, Z. J. Wang, and X. Y. Song, “Wear and high temperature oxidation behavior of wire arc sprayed iron based coatings,” Surf. Eng. 30, 784–790 (2014).

4. R. Kejžar and J. Grum, “Hardfacing of wear-resistant deposits by MAG welding with a flux-cored wire having graphite in its filling,” Weld. Int. 20, 961–976 (2005).

5. H. R. Ma, X. Y. Chen, J. W. Li, C. T. Chang, G. Wang, H. Li, X. M. Wang, and R. W. Li, “Fe-based amorphous coating with high corrosion and wear resistance,” Surf. Eng. 46, 1–7 (2016).

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