Chinese Journal of Lasers, Volume. 42, Issue 9, 906005(2015)
Study on Tribological Properties of Ni-Based Silicide Coating on Copper by Laser Cladding
[1] [1] Yan H, Zhang P L, Yu Z S, et al.. Microstructure and tribological properties of laser-clad Ni-Cr/TiB2 composite coatings on copper with the addition of CaF2[J]. Surface & Coatings Technology, 2012, 206(19): 4046-4053.
[2] [2] Dehm G, Medres B, Shepeleva L, et al.. Microstructure and tribological properties of Ni-based claddings on Cu substrates[J]. Wear, 1999, 225: 18-26.
[3] [3] Zhang P L, Liu X P, Lu Y L, et al.. Microstructure and wear behavior of Cu-Mo-Si coatings by laser cladding[J]. Applied Surface Science, 2014, 311: 709-714.
[4] [4] Zhang Y Z, Tu Y, Xi M Z, et al.. Characterization on laser clad nickel based alloy coating on pure copper[J]. Surface & Coatings Technology, 2008, 202(24): 5924-5928.
[5] [5] Yan H, Zhang J, Zhang P L, et al.. Laser cladding of Co-based alloy/TiC/CaF2 self-lubricating composite coatings on copper for continuous casting mold[J]. Surface & Coatings Technology, 2013, 232: 362-369.
[6] [6] Liu F, Liu C S, Chen S Y, et al.. Laser cladding Ni-Co duplex coating on copper substrate[J]. Optics and Lasers in Engineering, 2010, 48(7): 792-799.
[7] [7] Ng K W, Man H C, Cheng F T, et al.. Laser cladding of copper with molybdenum for wear resistance enhancement in electrical contacts[J]. Applied Surface Science, 2007, 253(14): 6236-6246
[8] [8] Wang H M, Duan G. Microstructure and wear resistance of a laser clad reinforced Cr3Si metal silicide composite coating[J]. Materials Science and Engineering:A, 2002, 336(1): 117-123.
[9] [9] Wang H M, Duan G. Wear and corrosion behavior of laser clad Cr3Si reinforced intermetallic composite coatings[J]. Intermetallics, 2003, 11(8): 755-762.
[10] [10] Duan G, Wang H M. High-temperature wear resistance of a laser-clad γ/Cr3Si metal silicide composite coating[J]. Scripta Materialia, 2002, 46(1): 107-111.
[11] [11] Gupta K P. The Cr-Ni-Si (Chromium-Nickel-Silicon) system[J]. JPEDAV, 2006, 27(5): 523–528.
[12] [12] Villars P, Prince A, Okamoto H. Handbook of Ternary Alloy Phase Diagrams[M]. New York: Asm Intl Press, 1995: 8476.
[13] [13] Yuan L, Wang H M. Microstructure and hot corrosion behaviors of a γ-toughened Cr13Ni5Si2/Cr3Ni5Si2 ternary metal silicide alloy[J]. Journal of Alloys and Compounds, 2009, 479(1): 217-224.
[14] [14] Pan Hu, Zhao Jianfeng, Liu Yunlei, et al.. Controllability research on dilution ratio of Nickel-based superalloy by laser cladding reparation[J]. Chinese J Lasers, 2013, 40(4): 04030071.
[15] [15] Li J, Yu Z S, Wang H P. Wear behaviors of an (TiB+TiC)/Ti composite coating fabricated on Ti6Al4V by laser cladding[J]. Thin Solid Films, 2011, 519(15): 4804-4808.
[16] [16] Lu X D, Wang H M. High-temperature phase stability and tribological properties of laser clad Mo2Ni3Si/NiSi metal silicide coatings [J]. Acta Materialia, 2004, 52(18): 5419-5426.
[17] [17] Cai L X, Wang C M, Wang H M. Laser cladding for wear- resistant Cr- alloyed Ni2Si- NiSi intermetallic composite coatings[J]. Materials Letters, 2003, 57(19): 2914-2918.
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Liu Xiaopeng, Zhang Peilei, Lu Yunlong, Yan Hua, Yu Zhishui. Study on Tribological Properties of Ni-Based Silicide Coating on Copper by Laser Cladding[J]. Chinese Journal of Lasers, 2015, 42(9): 906005
Received: Jan. 9, 2015
Accepted: --
Published Online: Sep. 6, 2015
The Author Email: Xiaopeng Liu (liuxpxagd@163.com)