Actual Problems in Machine Building. 2016. N 3
Materials Science
in Machine Building
____________________________________________________________________
466
7. Rolling contact fatigue mechanism of a plasma-sprayed and laser-remelted Ni alloy coating /
X.C. Zhang, B.S. Xu, S.T. Tu, F.Z. Xuan, Y.K. Zhang, H.D. Wang, Y.X. Wu // Fatigue & Fracture of
Engineering Materials & Structures. – 2009. – Vol. 32. – P. 84–96.
8. Effect of the scanning speed on microstructural evolution and wear behaviors of laser cladding
NiCrBSi composite coatings / J.L. Chen, J. Li, R. Song, L.L. Bai, J.Z. Shao, C.C. Qu // Optics
&LaserTechnology. – 2015. – Vol. 72. – P. 86–99.
9. Corrosion mechanism of NiCrBSi coatings deposited by HVOF / W. Zhao, Y. Wang, L. Dong,
K. Wu, J. Xue // Surface & Coatings Technology. – 2005. – Vol. 190. – P. 293–298.
10.
Lee C.H., Min K.O
. Effects of heat treatment on the microstructure and properties of HVOF-
sprayed Ni-Cr-W-Mo-B alloy coatings // Surface and Coatings Technology. – 2000. – Vol. 132. – P. 49–
57.
11.
Zeng Z., Kuroda S., Era H
. Comparison of oxidation behavior of Ni-20Cr alloy and Ni-base
self-fluxing alloy during air plasma spraying // Surface & Coatings Technology. – 2009. – Vol. 204. – P.
69–77.
12. A study on microstructure and flame erosion mechanism of a graded Ni–Cr–B–Si coating
prepared by laser cladding / H. Xuan, Q. Wang, S. Bai, Z. Liu, H. Sun, P. Yan // Surface & Coatings
Technology. – 2014. – Vol. 244. – P. 203–209.
13. Microstructure and wear properties of nickel-based surfacing deposited by plasma transferred
arc welding / C. Guoqing, F. Xuesong, W. Yanhui, Z. Wenlong // Surface & Coatings Technology. –
2013. – Vol. 228. – P. 276–282.
14. An investigation of the mechanical properties and wear resistance of NiCrBSi coatings carried
out by in situ laser remelting / N. Serres, F. Hlawka, S. Costil, C. Langlade, F. Machi // Wear. – 2011. –
Vol. 270. – P. 640–649.
15.
Xiang H., Xu Y.D., Zhang L.T
. Synthesis and microstructure of tantalum carbide and carbon
composite by liquid precursor route // Scripta Materialia. – 2006. – Vol. 55. – P. 339–342.
16. Microstructure and wear behavior of laser clad NiCrBSi+Ta composite coating / M.J. Chao,
W.L. Wang, E.J. Liang, D.X. Ouyang // Surface & Coatings Technology. – 2008. – Vol. 202. – P. 1918–
1922.
17.
Hemmati I., Ocelik V., De Hosson J.Th.M
. Advances in laser surface engineering: tackling the
cracking problem in laser-deposited Ni-Cr-B-Si-C alloys // JOM. – 2013. – Vol. 65 (6). – P. 741–748.
18. Effect of Ni-to-Fe ratio on structure and properties of Ni–Fe–B–Si–Nb coatings fabricated by
laser processing / R. Li, Z. Li, J. Huanga, P. Zhanga, Y. Zhua // Applied Surface Science. – 2011. – Vol.
257. – P.3554–3557.
19. Effects of Co on the cracking susceptibility and the microstructure of Fe-Cr-Ni laser-clad layer
/ S. Wulina, J. Echigoya, Z. Beidi, X. Changsheng, C. Kun // Surface and Coatings Technology. – 2001. –
Vol. 138. – P. 291–295.
20.
Hemmati I., Ocelik V., De Hosson J.Th.M
. Effects of the alloy composition on phase
constitution and properties of laser deposited Ni-Cr-B-Si coatings // Physics Procedia. – 2013. – Vol. 41. –
P. 302–311.
21. Air plasma sprayed coatings of self-fluxing powder materials / E.E. Kornienko, E.J.
Lapushkina, V.I. Kuzmin, S.P. Vaschenko, I.P. Gulyaev, E.V. Kartaev, D.S. Sergachev, N. Kashapov, S.
Sharifullin, I. Fayrushin // Journal of Physics: Conference Series. – 2014. – Vol. 567. – P. 012010.
22. Диаграммы состояния двойных металлических систем: справочник. В 3 т. Т. 1 / под
общ. ред. Н.П. Лякишева. – М.: Машиностроение, 1996. – 996 с.
23. The effect of heat temperature on the structure of plasma coating of the Ni-Cr-Si-B system / E.
Kornienko, A. Nikulina, E. Drobyaz, N. Plotnikova, E. Lapushkina, V. Kuz’min // Applied Mechanics
and Materials. – 2015. – Vol. 788. – P. 252–258.