[1]汤金钢, 刘道新, 唐长斌, 等. Ti6Al4V钛合金表面Zr-N合金化层的抗高温摩擦磨损性能[J]. 稀有金属材料与工程, 2013, 42(2): 331-335. Tang Jingang, Liu Daoxin, Tang Changbin, et al. Tribology behavior of Zr-N alloying layer on Ti6Al4V alloy surface at elevated temperature[J]. Rare Metal Materials and Engineering, 2013, 42(2): 331-335. [2]魏东博, 张平则, 姚正军, 等. 钛合金阻燃技术的研究进展[J]. 机械工程材料, 2010, 34(8): 1-4. Wei Dongbo, Zhang Pingze, Yao Zhengjun, et al. Research progress of burning-resistant technology of titanium alloy[J]. Materials for Mechanical Engineering, 2010, 34(8): 1-4. [3]张平则, 徐 重, 张高会, 等. Ti-Cu表面阻燃钛合金研究[J]. 稀有金属材料与工程, 2005, 34(1): 162-165. Zhang Pingze, Xu Zhong, Zhang Gaohui, et al. Study of surface burn-resistant Ti-Cu titanium alloy[J]. Rare Metal Materials and Engineering, 2005, 34(1): 162-165. [4]谢旭霞, 张 乐, 张 鑫, 等. 航空用钛合金阻燃技术[J]. 有色金属(冶炼部分), 2008(S1): 150-153. Xie Xuxia, Zhang Le, Zhang Xin, et al. Burn-resistant technologies of titanium alloys for aviation[J]. Nonferrous Metals(Extractive Metallurgy), 2008(S1): 150-153. [5]Sun Y, Hao M. Statistical analysis and optimization of process parameters in Ti6Al4V laser cladding using Nd: YAG laser[J]. Optics and Lasers in Engineering, 2012, 50(7): 985-995. [6]Cottam Ryan, Brandt Milan. Laser cladding of Ti-6Al-4V powder on Ti-6Al-4V substrate: Effect of laser cladding parameters on microstructure[J]. Physics Procedia, 2011, 12: 323-329. [7]刘月龙, 斯松华. 激光熔覆铁基合金涂层研究进展[J]. 安徽工业大学学报, 2005, 22(4): 348-351. Liu Yuelong, Si Songhua. Progress on laser cladding iron- based alloy[J]. Journal of Anhui University of Technology, 2005, 22(4): 348-351. |