• Chinese Journal of Lasers
  • Vol. 39, Issue 10, 1003006 (2012)
Wang Chuanqi*, Liu Hongxi, Zhou Rong, Jiang Yehua, and Zhang Xiaowei
Author Affiliations
  • [in Chinese]
  • show less
    DOI: 10.3788/cjl201239.1003006 Cite this Article Set citation alerts
    Wang Chuanqi, Liu Hongxi, Zhou Rong, Jiang Yehua, Zhang Xiaowei. Effect of Tempering on Microstructure and Wear Resistance of Laser Cladding Ni-Base Reinforced Particles Composite Coating[J]. Chinese Journal of Lasers, 2012, 39(10): 1003006 Copy Citation Text show less
    References

    [1] M. Chao, W. Wang, E. Liang et al.. Microstructure and wear resistance of TaC reinforced Ni-based coating by laser cladding[J]. Surface & Coatings Technology, 2008, 202(10): 1918~1922

    [2] G. Bi, B. Schürmann, A. Gasser et al.. Development and qualification of a novel laser-cladding head with integrated sensors[J]. International Journal of Machine Tools & Manufacture, 2007, 47(3-4): 555~561

    [3] Zhang Xiaowei, Liu Hongxi, Jiang Yehua et al.. Research progress of functional composite coatings on Ti6Al4V alloy surface prepared by laser cladding technique[J]. Rare Metal Materails and Engineering, 2012, 41(1): 178~183

    [4] C. Navas, R. Colao, J. de Damborenea et al.. Abrasive wear behaviour of laser clad and flame sprayed-melted NiCrBSi coatings[J]. Surface & Coatings Technology, 2006, 200(24): 6854~6862

    [5] R. González, M. A. García, I. Peuelas et al.. Microstructural study of NiCrBSi coatings obtained by different processes[J]. Wear, 2007, 263(1-6): 619~624

    [6] S. W. Huang, M. Samandia, M. Brandt. Abrasive wear performance and microstructure of laser clad WC/Ni layers[J]. Wear, 2004, 256(11-12): 1095~1105

    [7] E. Fernández, M. Cadenas, R. González et al.. Wear behaviour of laser clad NiCrBSi coating[J]. Wear, 2005, 259(7-12): 870~875

    [8] H. Kashani, A. Amadeh, H. M. Ghasemi. Room and high temperature wear behaviors of nickel and cobalt base weld overlay coatings on hot forging dies[J]. Wear, 2007, 262(7-8): 800~806

    [9] N. Serres, F. Hlawka, S. Costil et al.. Microstructures and mechanical properties of metallic NiCrBSi and composite NiCrBSi-WC layers manufactured via hybrid plasma/laser process[J]. Applied Surface Science, 2011, 257(12): 5132~5137

    [10] Yuan Qinglong, Feng Xudong, Cao Jingjing et al.. Research on microstructure of Ni-based alloy coating by laser cladding[J]. Chinese J. Lasers, 2010, 37(8): 2116~2120

    [11] He Xiangming, Liu Xiubo, Yang Maosheng et al.. Elevated temperature tribological behaviors of laser cladding nickel-based composite coating on austenitic stainless steel[J]. Chinese J. Lasers, 2011, 38(9): 0903007

    [12] C. Guo, J. Zhou, J. Chen et al.. High temperature wear resistance of laser cladding NiCrBSi and NiCrBSi/WC-Ni composite coatings[J]. Wear, 2011, 270(7-8): 492~498

    [13] G. Sun, R. Zhou, P. Li et al.. Laser surface alloying of C-B-W-Cr powders on nodular cast iron rolls[J]. Surface & Coatings Technology, 2011, 205(8-9): 2747~2754

    [14] Xu Songhua, Xiao Yang, Li Jian. Organization property researches of the laser repair technology in the helicopter engine turbine oriented implement[J]. Acta Optica Sinica, 2010, 30(8): 2311~2316

    [15] Wu Chaofeng, Ma Mingxing, Liu Wenjin et al.. Study on wear resistance of laser cladding Fe-based composite coatings reinforced by in-situ multiple carbide particles[J]. Acta Metallurgica Sinica, 2009, 45(8): 1013~1018

    [16] Wu Chaofeng, Ma Mingxing, Wu Aiping et al.. Morphologic characteristics of in-situ synthesized carbide particles in laser cladded Fe-based composite coatings[J]. Acta Metallurgica Sinica, 2009, 45(9): 1091~1098

    [17] Niu Xin, Chao Mingju, Wang Wenli et al.. In situ synthesized NbC particulate reinforced Ni-based composite coatings by laser cladding[J]. Chinese J. Lasers, 2006, 33(7): 987~992

    [18] Wang Wenli, Chao Mingju, Wang Dongsheng et al.. Investigation on in-situ synthesis of TaC particulate reinforced Ni-based composite coatings by laser cladding[J]. Chinese J. Lasers, 2007, 34(2): 277~282

    [19] Jing Xiaoding, Chao Mingju, Sun Haiqin et al.. Investigation on in-situ synthesis of Cr3C2-CrB reinforced Ni-based composite coatings by laser cladding[J]. Chinese J. Lasers, 2009, 36(1): 231~237

    [20] C. Wang, H. Liu, X. Zhang et al.. Effect of laser power and heat treatment process on microstructure and property of multi-pass Ni based alloy laser cladding coating[C]. SPIE, 2010, 7843: 78430Y

    [21] Wang Chuanqi, Liu Hongxi, Zhou Rong et al.. Influence of tempering on microstructure and corrosion resistance of multi-pass Ni-based coatings on 45 steel prepared by laser cladding[J]. Transactions of Materials and Heat Treatment, 2011, 32(7): 145~150

    [22] A. Hidouci, J. M. Pelletier, F. Ducoin et al.. Microstructural and mechanical characteristics of laser coatings[J]. Surface and Coatings Technology, 2000, 123(1): 17~23

    [23] S. Anthonysamy, K. Ananthasiran, I. Kaliappan et al.. Gibbs energies of formation of chromium carbides[J]. Metallurgical and Materials Transaction A, 1996, 27(7): 1717~1724

    [24] Li Qiang, Lei Tingquan, Meng Qingchang et al.. Transmission electron microscopy for microstructural characterization of the laser clad Ni-Cr-B-Si-C alloy[J]. Chinese J. Lasers, 1999, 26(4): 372~378

    [25] Si Songhua, Xu Kun, Yuan Xiaomin et al.. Microstructure and wear performance of laser cladding Cr3C2/Co alloy composite coating[J]. Tribology, 2006, 26(2): 125~129

    [26] C. H. Lee, K. O. Min. Effects of heat treatment on the microstructure and properties of HVOF-sprayed Ni-Cr-W-Mo-B alloy coatings[J]. Surface and Coatings Technology, 2000, 132(1): 49~57

    [27] Wang Cunshan, Xia Yuanliang, Li Gang et al.. Microstructure and properties of broad-beam laser clad Ni60B+30%WC composite coatings[J]. Transactions of Materials and Heat Treatment, 2001, 22(2): 32~36

    [28] Q. Y. Hou, Z. Y. Huang, N. Shi et al.. Effects of molybdenum on the microstructure and wear resistance of nickel-based hardfacing alloys investigated using Rietveld method[J]. Journal of Materials Processing Technology, 2009, 209(6): 2767~2772

    [29] Li Zhi, Qu Jingxin, Wu Zhongxing et al.. Study on microstructure and high temperature wear characteristics of a vacuum melting Ni-base alloy coating[J]. Journal of Materials Engineering, 2000, (1): 7~12

    [30] J. H. Chang, S. K. Tzenga, J. M. Chou et al.. Effect of dry sliding wear conditions on a vacuum induction melted Ni alloy[J]. Wear, 2011, 270(3-4): 294~301

    CLP Journals

    [1] Cui Aiyong, Hu Fangyou, Wei Huakai, Liu Haodong, Huang Fei, Wang Zhi. Research on Laser Gradient Modified Destressing Restoration of Aerial Titanium Alloy Impairment[J]. Chinese Journal of Lasers, 2015, 42(s1): 103007

    [2] Li Xingcheng, Zhang Yongkang, Lu Yalin, Chen Jüfang, Zhou Jinyu. Research of Corrosion Resistance for AZ31 Magnesium Alloy by Laser Shock Processing[J]. Chinese Journal of Lasers, 2014, 41(4): 403002

    [3] Yang Lijing, Li Zhihong, Li Bo, Zhang Qunli, Yao Jianhua. Microstructure and Deposition Mechanism of Ni60 Coatings Prepared by Supersonic Laser Deposition[J]. Chinese Journal of Lasers, 2015, 42(3): 306005

    Wang Chuanqi, Liu Hongxi, Zhou Rong, Jiang Yehua, Zhang Xiaowei. Effect of Tempering on Microstructure and Wear Resistance of Laser Cladding Ni-Base Reinforced Particles Composite Coating[J]. Chinese Journal of Lasers, 2012, 39(10): 1003006
    Download Citation