[1] Dong Jianxin. High Temperature Alloy GH4738 and its Application[M]. Beijing:Metallurgical Industry Press, 2014:1-5. (in Chinese)董建新. 高温合金GH4738及应用[M]. 北京:冶金工业出版社, 2014:1-5.
[2] Xue Lei, Huang Weidong, Chen Jing, et al. Application of laser forming repair technology on the aerial castings[J].Foundry Technology, 2008, 29(3):391-393. (in Chinese)薛蕾, 黄卫东, 陈静, 等. 激光成形修复技术在航空铸件修复中的应用[J]. 铸造技术, 2008, 29(3):391-393.
[3] Zheng Lijuan, Li Yan, He Dachuan, et al. Analysis on temperature field of multi-path laser claded and microstructure of coatings layer[J]. Infrared and Laser Engineering, 2013, 42(S1):52-57. (in Chinese)郑丽娟, 李燕, 何大川, 等. 激光多道熔覆温度场及熔覆层组织分析[J]. 红外与激光工程, 2013, 42(S1):52-57.
[4] Wang Zhijian, Dong Shiyun, Xu Binshi, et al. Effect of laser cladding processing parameters on metal forming efficiency and geometry[J]. Infrared and Laser Engineering, 2010, 39(2):315-319. (in Chinese)王志坚, 董世运, 徐滨士, 等. 激光熔覆工艺参数对金属成形效率和形状的影响[J]. 红外与激光工程, 2010, 39(2):315-319.
[5] Bian Hongyou, Zhao Xiangpeng, Li Ying, et al. Experimental study on laser deposition repair GH4169 alloy component[J]. Infrared and Laser Engineering, 2016, 45(2):0206006. (in Chinese)卞宏友, 赵翔鹏, 李英, 等. 激光沉积修复GH4169合金试验研究[J]. 红外与激光工程, 2016, 45(2):0206006.
[6] Kim Daeyoung, Hwang Jonghyun, Kim Kwangsoo1 Youn Joonggeun. A study on fusion repair process for a precipitation hardened IN738 Ni-based superalloy[J]. Journal of Engineering for Gas Turbines and Power, 2000, 122(7):457-461.
[7] Zhang Dongyun, Li Zhibo, Zhao Heng, et al. Research of the influence of processing parameter on laser directional solidification structure[J]. Applied Laser, 2013, 33(2):113-118. (in Chinese)张冬云, 李志波, 赵恒, 等. 工艺参数对Rene80激光定向凝固组影响研究[J]. 应用激光, 2013, 33(2):113-118.
[8] Li Zhuoxin, Wang Heng, Li Yang, et al. Progress on effect of processes and microelements on liquation cracking of weld heat-affected zone of nickel-based alloy[J]. Journal of Mechanical Engineering, 2016, 42(6):37-43. (in Chinese)栗卓新, 王恒, 李杨, 等. 工艺与微量元素对镍基合金焊接热影响区液化裂纹影响的研究进展[J]. 机械工程学报, 2016, 42(6):37-43.
[9] Wang Jiajin. Laser Processing Technologies[M]. Beijing:China Metric Process, 1992:10-15. (in Chinese)
[10] Hussein N I S, Segal J, McCartney D G, et al. Microstructure formation in Waspaloy multilayer builds following direct metal deposition with laser and wire[J]. Materials Science and Engineering, 2008, 497:260-269.
[11] Wu Baoping, Li Linhan, Wu Jiantao, et al. Effect of solution temperature on microstructure of as-cast waspaloy alloy[J].Transaction of Materials and Heat Treatment, 2014, 35:146-153. (in Chinese)吴保平, 李林翰, 吴剑涛, 等. 固溶温度对铸造waspaloy合金组织的影响[J]. 材料热处理学报, 2014, 35:146-153.
[12] Yao Zhihao, Dong Jianxin, Zhang Maicang, et al.Relationships between microstructures and properties for GH864 superalloy[J]. Rare Metal Materials And Engineering, 2010, 39(9):1565-1570. (in Chinese)姚志浩, 董建新, 张麦仓, 等. GH864合金显微组织与力学性能的关联性[J].稀有金属材料与工程, 2010, 39(9):1565-1570.
[13] Kumar S, Shahi A S. Effect of heat input on the microstructure and mechanical properties of gas tungsten arc welded AISI304 stainless steel joints[J]. Mater Des, 2011, 32:3617-3623.