Structure and Properties of Coatings Deposited by High Velocity Arc Spray Technique

[+] Author and Article Information
Binshi Xu, Wei Zhang, Shining Ma, Baohong Tian, Xiubing Liang

Surface Engineering Research Institute of China, Mechanical Engineering Society (CMES), 100072 Beijing, China

J. Tribol 122(3), 646-649 (Oct 28, 1999) (4 pages) doi:10.1115/1.555415 History: Received May 20, 1999; Revised October 28, 1999
Copyright © 2000 by ASME
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Xu,  B. S., Liang,  X. B., Ma,  S. N., and Liu,  S. C., 1998, “Research on the Newly Developed High Velocity Arc Spray Gun,” China Surf. Eng., 11 (3), pp. 16–19.
Sampson,  E., 1993, “Advances in Thermal Spray Coatings Broaden Their Applications,” Weld. J. (Miami), 7, p. 39.
Wang, B., 1998, “Elevated Temperature Erosion-Corrosion of Several Thermal Spray Coatings,” The Challenge of 21st Century, Codder, C. ed., ASM International, 1 , pp. 151.
Steffens, H. D., et al. 1995, “Properties of Sonarc-Sprayed Coatings,” Proc. 8th NTSC, Houston, TX, p. 689.


Grahic Jump Location
Wear volume of coatings deposited by HVAS and AS methods
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Microstructure and distribution of chromium along line for (a) HVAS 3Cr13 coating, and (b) AS 3Cr13 coating by EDAX analysis
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SEM micrographs of sections perpendicular to the 3Cr13 coating surface
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SEM micrographs of 3Cr13 coatings deposited by (a) HVAS, and (b) AS
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The schematic of the flow field for (a) general arc spray gun, and (b) HVAS gun



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