[1]
[2] Y T Pei, V Ocelik, J Th M De Hosson. SiCp/TC4 functionally graded materials produced by laser melt injection [J]. Acta Materialia, 2002, 50(8): 2035-2051.
[3]
[4] J J Candel, V Amigo, J A Ramos. Sliding wear resistance of TiCp reinforced titanium composite coating produced by laser cladding[J]. Surface Coatings Technology, 2010, 20(204): 3161-3166.
[5]
[6] Li Chunyan, Zhang Song, Kang Yuping, et al. Comment on material system for laser cladding[J]. Laser Journal, 2002, 23 (3): 5-9. (in Chinese)
[7] Wang Ying, Zhang Lingyun, Yu Lili, et al. Microstructure and wear resistance of laser clad Ti2Ni3Si/NiTi intermetallic coatings on titanium alloy [J]. Rare Metal Materials and Engineering, 2006, 35(1): 62-65. (in Chinese)
[8]
[9]
[10] C Guo, J S Zhou, J M Chen. Improvement of the oxidation and wear resistance of pure Ti by laser cladding at elevated temperature[J]. Surface Coating Technology, 2010, 205: 2142-2151.
[11]
[12] Li Liqun, Liu Dejian, Chun Yanbin. Electeon microscopy study of reaction layers between single-crystal WC particle and Ti- 6Al-4V after melt injection [J]. Acta Materialia, 2009, 57 (12): 3606-3614.
[13]
[14] J J Candel, V Amigo, J A Ramos. Sliding wear resistance of TiCp reinforced titanium composite coating produced by laser cladding[J]. Surface Coatings Technology, 2010, 2: 3161-3166.
[15] Lin Yinghua, Chen Zhiyong, Li Yuehua, et al. Microstructure and hardness characteristic of in-situ synthesized TiB coating by laser cladding on TC4 titanium alloy [J]. Infrared and Laser Engineering, 2012, 41(10): 2694-2698. (in Chinese)
[16]
[17] Lei Yiwen, Sun Ronglu, Tang Ying. Temperature distribution simulation of laser cladding TiC/NiCrBSiC coating on Ti6Al4V alloy by a finite element model [J]. Materials Science Technology, 2011, 19(6): 100-105.
[18]
[19]
[20] Wei Niu, Sun Ronglu, Lei Yiwen, et al. Microstructure and formation mechanism of titanium matrix composites coating on Ti6Al4V by laser cladding[J]. Chinese Journal of Laser, 2008, 35(11):1756-1759.
[21]
[22] Li Mingxi, Zhao Qingyu, He Yizhu. Effect of V-N alloy on microstructure and wear resistance of Co-Based alloy laser coating[J]. Chinese Journal of Laser, 2008, 35(8): 1260-1264. (in Chinese)
[23]
[24] Yang Guang. Fabrication of Ti matrix FGM using laser metal deposition technique [D].Shenyang:ChineseAcademy of Sciences Shenyang Institute of Automation, 2010: 56-70. (in Chinese)
[25]
[26] Yang Guang, Wang Wei, Liu Weijun, et al. Laser in-situ synthesized TiC reinforced titanium based wear-resistant coating and its tribological performance[J]. Journal of Shenyang University of Technology, 2011, 33(3): 259-264. (in Chinese)
[27] Qin Lanyun, Wang Wei, Yang Guang , et al. Optimum design of Ti- FGM for laser metal deposition[J]. Applied Laser, 2013, 33 (1): 30-33. (in Chinese)
[28]
[29] Cui Aiyong, Hu Fangyou, Lu Changliang, et al. Microstructure and property of laser cladding Ti-matrix functional gradient layer[J]. Laser Technology, 2012, 36(2): 262-264. (in Chinese)
[30]
[31] Zhang Song, Zhang Chunhua, Wu Weitao, et al. An in situ formed TiC particle reinforcement composite coating induced by laer melting on suiface of alloy Ti6Al4V and its wearing performance[J]. ActaMetallrugica Sinica, 2001, 37(3): 315-320.