• Chinese Journal of Lasers
  • Vol. 43, Issue 4, 403009 (2016)
Li Fuquan*, Feng Xinyou, and Chen Yanbin
Author Affiliations
  • [in Chinese]
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    DOI: 10.3788/cjl201643.0403009 Cite this Article Set citation alerts
    Li Fuquan, Feng Xinyou, Chen Yanbin. Influence of WC Content on Microstructure of WC/Ni60A Laser Cladding Layer[J]. Chinese Journal of Lasers, 2016, 43(4): 403009 Copy Citation Text show less
    References

    [1] Zeng Xiaoqing, He Haiyan, Zhou Shanshan, et al.. Microstructure and property analysis of laser cladded Ni60 alloy on H13 steel surface [J]. Journal of Taiyuan University of Technology, 2007, 41(4): 361-363.

    [2] Tang Shujun, Liu Hongxi, Zhang Xiaowei, et al.. Microstructure and property of selective laser cladding Ni-Al intermetallic compound coating on H13 steel surface[J]. Infrared and Laser Engineering, 2014, 43(5): 1622-1624.

    [3] Yan Zhonglin, Ye Hong. The technique of laser cladding and its application on dies[J]. Laser Journal, 2006, 27(2): 73-74.

    [4] Yao Shuang, Liu Hongxi, Zhang Xiaowei, et al.. Microstructure and wear property of TiC particle reinforced composite coating on H13 steel surface by laser in-situ synthesis[J]. Chinese J Lasers, 2014, 41(10): 1003004.

    [5] Qiao Y F, Fischer T E, Dent A. The effects of fuel chemistry and feedstock powder structure on the mechanical and tribological properties of HVOF thermal-sprayed WC-Co coatings with very fine structures[J]. Surface and Coating Technology, 2003, 172(1): 24-41.

    [6] Si S H, Yuan X M, Liu Y L, et al.. Effect of laser power on microstructure and wear resistance of WCp/Ni cermet coating[J]. Journal of Iron and Steel Research International, 2006, 13(3): 74-78.

    [7] Yang Lijing, Li Zhihong, Li Bo, et al.. Microstructure and deposition mechanism of Ni60 coatings prepared by supersonic laser deposition [J]. Chinese J Lasers, 2015, 42(3): 0306005.

    [8] Guo Shirui, Chen Zhijun, Zhang Qunli, et al.. Effects of different pressures on laser cladding special powder prepared by gas atomization [J]. Chinese J Lasers, 2013, 40(6): 0603001.

    [9] Rong Lei, Huang Jian, Li Zhuguo, et al.. Microstructure and property of laser cladding Ni-based alloy coating reinforced by WC particles [J]. Chinese Surface Engineering, 2010, 23(6): 41-50.

    [10] Ma Q S, Li Y, Wang J, et al.. Investigation on cored-eutectic structure in Ni60/WC composite coatings fabricated by wide-band laser cladding[J]. Journal of Alloys and Compounds, 2015, 645: 151-157.

    [11] Zhang Y M, Hida M, Sakakibara A, et al.. Effect of WC addition on microstructures of laser melted Ni-based alloy powder[J]. Journal of Materials Engineering and Performance, 2002, 11(6): 667-674.

    [12] Wu P, Du H M, Chen X L, et al.. Influence of WC particle behavior on the wear resistance properties of Ni-WC composite coatings[J]. Wear, 2004, 257(1-2): 142-147.

    [13] Li S, Hu QW, Zeng X Y, et al.. Effect of carbon content on the microstructure and the cracking susceptibility of Fe-based laser-clad layer[J]. Applied Surface Science, 2005, 240(1): 63-70.

    [14] Xu G J, Kutsuna M, Liu Z J, et al.. Characteristics of Ni-based coating layer formed by laser and plasma cladding processes[J]. Materials Science and Engineering A, 2006, 417(1-2): 63-72.

    [15] Wu Xinwei, Zeng Xiaoyan, Zhu Beidi, et al.. Cracking tendency of laser cladding Ni-based WC composite coatings[J]. Chinese J Lasers, 1997, 24(6): 570-576.

    [16] Gustafson P. A thermodynamical evaluation of the C-Cr-Fe-W system[J]. Metallurgical Transactions A, 1998, 19(10): 2547-2554.

    [17] Cui Zhongqi, Liu Beixing. Metallurgy and heat treatment theory[M]. Harbin: Harbin Institute of Technology Press, 2007: 2.

    [18] Farahmand P, Liu S, Zhang Z, et al.. Laser cladding assisted by induction heating of Ni-WC composite enhanced by nano-WC and La2O3 [J]. Ceramics International, 2014, 40(10): 15421-15438.

    [19] Liu Ximing. Mechanism and control of the nick based alloy +WC laser cladded layer microstructure[J]. Applied Laser, 2006, 26(5): 299- 302.

    [20] Chen Zhikun, Liu Min, Zeng Dechang, et al.. Microstructure and wear resistance of laser cladding NiCrWB alloy coating Cu substructure [J]. Tribology, 2010, 30(4): 344-349.

    [21] Jin Y, Fan J, Mou K, et al.. Structural and phase transformation behavior of electroless Ni-W-Cr-P alloy coatings on stainless steel[J]. Inorganic Materials, 2010, 46(6): 631-638.

    [22] Yuan Xiaozhou, Dai Xiaoguang. Investigation on dissolution characteristics of cast WC particles in Ni-based WC coating by laser cladding [J]. Journal of Ningbo Polytechnic, 2013, 17(6): 106-108.

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    Li Fuquan, Feng Xinyou, Chen Yanbin. Influence of WC Content on Microstructure of WC/Ni60A Laser Cladding Layer[J]. Chinese Journal of Lasers, 2016, 43(4): 403009
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