[1]吴洪键, 李文波, 邓春明, 等. 冷喷涂增材制造关键技术[J]. 中国表面工程, 2020, 33(4): 1-15. Wu Hongjian, Li Wenbo, Deng Chunming, et al. Key techniques of cold spray additive manufacturing[J]. China Surface Engineering, 2020, 33(4): 1-15. [2]李文亚, 余 敏. 冷喷涂技术的最新研究现状[J]. 表面技术, 2010, 39(5): 95-99. Li Wenya, Yu Min, The latest development state of the cold spraying technique[J]. Surface Technology, 2010, 39(5): 95-99. [3]顾 波. 增材制造技术国内外应用与发展趋势[J]. 金属加工(热加工), 2022(3): 1-16. [4]文世峰, 季羡泰. 激光选区烧结技术的研究现状及应用进展[J]. 苏州市职业大学学报, 2018, 29(1): 26-31. Wen Shifeng, Ji Xiantai. Review on research and application of selective laser sintering technology[J]. Journal of Suzhou Vocational University, 2018, 29(1): 26-31. [5]卢秉恒, 李涤尘. 增材制造(3D打印)技术发展[J]. 机械制造与自动化, 2013, 42(4): 1-4. Lu Bingheng, Li Dichen. Development of the additive manufacturing (3D printing) technology[J]. Machine Building and Automation, 2013, 42(4): 1-4. [6]李文亚, 张冬冬, 黄春杰, 等. 冷喷涂技术在增材制造和修复再制造领域的应用研究现状[J]. 焊接, 2016(4): 2-8. Li Wenya, Zhang Dongdong, Huang Chunjie, et al. State of the art of cold spraying additive manufacturing and remanufacturing[J]. Welding and Joining, 2016(4): 2-8. [7]Irissou E, Legoux J, Ryabinin A N, et al. Review on cold spray process and technology: Part I-Intellectual property[J]. Journal of Thermal Spray Technology, 2008, 17(4): 495-516. [8]Lee J C, Kang H J, Chu W S, et al. Repair of damaged mold surface by cold-spray method[J]. CIRP Annals, 2007, 56(1): 577-580. [9]Dean S W, Potter J K, Yetter R A, et al. Energetic intermetallic materials formed by cold spray[J]. Intermetallics, 2013, 43: 121-130. [10]Luo X, Wei Y, Wang Y, et al. Microstructure and mechanical property of Ti and Ti6Al4V prepared by an in-situ shot peening assisted cold spraying[J]. Materials and Design, 2015, 85: 527-533. [11]Irissou E, Legoux J, Arsenault B, et al. Investigation of Al-Al2O3 cold spray coating formation and properties[J]. Journal of Thermal Spray Technology, 2007, 16(5/6): 661-668. [12]Yin S, Cavaliere P, Aldwell B, et al. Cold spray additive manufacturing and repair: Fundamentals and applications[J]. Additive Manufacturing, 2018, 21: 628-650. [13]Li Z, Yang X, Zhang J, et al. Interfacial mechanical behavior and electrochemical corrosion characteristics of cold-sprayed and hot-rolled titanium/stainless-steel couples[J]. Advanced Engineering Materials, 2016, 18(7): 1240-1249. [14]Tariq N H, Gyansah L, Qiu X, et al. Thermo-mechanical post-treatment: A strategic approach to improve microstructure and mechanical properties of cold spray additively manufactured composites[J]. Materials and Design, 2018, 156: 287-299. [15]Qiu X, Tariq N U H, Qi L, et al. In-situ Sip/A380 alloy nano/micro composite formation through cold spray additive manufacturing and subsequent hot rolling treatment: Microstructure and mechanical properties[J]. Journal of Alloys and Compounds, 2019, 780: 597-606. |