Studying Adhesion between a 67Ni18Cr5Si4B Alloy Powder Coating Produced with the High Velocity Oxygen Fuel Thermal Spray Method HVOF and a Substrate Surface of a Worn C45 Steel Shaft
Author:
Affiliation:
1. Ha Noi University of Mining and Geology
2. Dong Nai Technology University
3. Saint-Petersburg Mining University, 2
Abstract
Publisher
Trans Tech Publications, Ltd.
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Link
https://www.scientific.net/KEM.854.117.pdf
Reference13 articles.
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3. J. Berget, T. Rogne, E. Bardal, Erosion-corrosion properties of different WC-Co-Cr coatings deposited by the HVOF process-Influence of metallic matrix composition and spray powder size distribution, Surf. Coat. Technol. 201 (2007) 7619-7625.
4. V. V. Gabov, D. A. Zadkov, K. L. Nguyen, Features of elementary burst formation during cutting coals and isotropic materials with reference cutting tool of mining machines, Journal of Mining Institute 236 (2019) 153.
5. Y. Wang, Z. Z. Xing, Q. Luo, A. Rahman, J. Jiao, S. J. Qu, Y. G. Zheng, J. Shen, Corrosion and erosion–corrosion behaviour of activated combustion high-velocity air fuel sprayed Fe-based amorphous coatings in chloride-containing solutions, Corros. Sci. 98 (2015) 339-353.
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