[1] 李权, 王福德, 王国庆, 等. 航空航天轻质金属材料电弧熔丝增材制造技术[J]. 航空制造技术, 2018, 61(3):74-82. LI Quan, WANG Fude, WANG Guoqing, et al. Wire and arc additive manufacturing of lightweight metal components in aeronautics and astronautics[J]. Aeronautical Manufacturing Technology, 2018, 61(3):74-82. [2] SPENCER J D, DICKENS P M, WYKES C M. Rapid prototyping of metal parts by three-dimensional welding[J]. Proceedings of the Institution of Mechanical Engineers, Part B:Journal of Engineering Manufacture, 1998, 212(3):175-182. [3] 杨建华, 张定华, 吴宝海. 考虑加工过程的复杂薄壁件加工综合误差补偿方法[J]. 航空学报, 2014, 35(11):3174-3181. YANG Jianhua, ZHANG Dinghua, WU Baohai. A comprehensive error compensation approach considering machining process for complex thin-wall parts machining[J]. Acta Aeronautica et Astronautica Sinica, 2014, 35(11):3174-3181. [4] 柏久阳, 王计辉, 林三宝, 等. 铝合金电弧增材制造焊道宽度尺寸预测[J]. 焊接学报, 2015, 36(9):87-90. BAI Jiuyang, WANG Jihui, LIN Sanbao, et al. Width prediction of aluminium alloy weld additively manufactured by TIG arc[J]. Transactions of the China Welding Institution, 2015, 36(9):87-90. [5] 张金田, 王任甫, 王杏华. 船用钢电弧增材制造的焊道尺寸预测[J]. 材料开发与应用, 2018, 33(2):17-22. ZHANG Jintian, WANG Renfu, WANG Xinghua. The weld bead dimensional prediction of wire and arc additive manufacture for ship steel[J]. Development and Application of Materials, 2018, 33(2):17-22. [6] FENG Jicai, ZHANG Hongtao, HE Peng. The CMT short-circuiting metal transfer process and its use in thin aluminium sheets welding[J]. Materials & Design, 2009, 30(5):1850-1852. [7] LIU Haihua, CHEN Haojie, LIU Wenji, et al. Numerical analysis of flow-thermal coupling in micro-plasma welding pool of thin-wall part[J]. China Welding, 2018, 27(2):13-18. [8] CUNNINGHAM C R, FLYNN J M, SHOKRANI A, et al. Invited review article:Strategies and processes for high quality wire arc additive manufacturing[J]. Additive Manufacturing, 2018, 22:672-686. [9] DING Donghong, SHEN Chen, PAN Zengxi, et al. Towards an automated robotic arc-welding-based additive manufacturing system from CAD to finished part[J]. Computer-Aided Design, 2016, 73:66-75. [10] WILLIAMS S W, MARTINA F, ADDISON A C, et al. Wire + arc additive manufacturing[J]. Materials Science and Technology, 2016, 32(7):641-647. [11] LOCKETT H, DING J, WILLIAMS S, et al. Design for wire + arc additive manufacture:Design rules and build orientation selection[J]. Journal of Engineering Design, 2017, 28(7-9):568-598. [12] 朱贝贝, 熊俊. 交叉件GTA填丝增材制造弧压检测与成形控制[J]. 机械工程学报, 2019, 55(15):17-23. ZHU Beibei, XIONG Jun. Arc voltage detection and forming control for crossing parts in GTA additive manufacturing[J]. Journal of Mechanical Engineering, 2019, 55(15):17-23. [13] 高炼玲, 余圣甫, 禹润缜, 等. 5356铝合金过渡端框电弧增材制造及组织与性能[J]. 机械工程学报, 2020, 56(8):28-36. GAO Lianling, YU Shengfu, YU Renzhen, et al. Arc voltage detection and forming control for crossing parts in GTA additive manufacturing[J]. Journal of Mechanical Engineering, 2020, 56(8):28-36. [14] 杨壮, 王天琪, 李亮玉, 等. 厚壁结构件电弧增材制造成形方法及工艺[J]. 焊接学报, 2019, 40(10):100-105. YANG Zhuang, WANG Tianqi, LI Liangyu, et al. Forming method and technology of arc additive manufacturing for thick wall structural parts[J]. Transactions of the China Welding Institution, 2019, 40(10):100-105. [15] 王天琪, 杨壮, 李亮玉, 等. 悬空特征结构件电弧增材制造成形及算法优化[J]. 焊接学报, 2019, 40(12):78-83. WANG Tianqi, YANG Zhuang, LI Liangyu, et al. Research on forming and welding technology of thick wall structure arc added material manufacturing[J]. Transactions of the China Welding Institution, 2019, 40(12):78-83. [16] 王天琪, 李天旭, 李亮玉, 等. 复杂结构薄壁件电弧增材制造离线编程技术[J]. 焊接学报, 2019, 40(5):42-47. WANG Tianqi, LI Tianxu, LI Liangyu, et al. Off-line programming technology for arc additive manufacturing of thin-walled components with complex structures[J]. Transactions of the China Welding Institution, 2019, 40(5):42-47. [17] 韩文涛, 林健, 雷永平, 等. 不同层间停留时间下电弧增材制造2Cr13薄壁件热力学行为[J]. 焊接学报, 2019, 40(12):47-53. HAN Wentao, LIN Jian, LEI Yongping, et al. Thermal-stress analysis of wire-arc additive manufacturing 2Cr13 parts with different interlayer idle time[J]. Transactions of the China Welding Institution, 2019, 40(12):47-53. [18] ZHANG Xinxin, LV You, TAN Sihan, et al. Microstructure and corrosion behaviour of wire arc additive manufactured AA2024 alloy thin wall structure[J]. Corrosion Science, 2021, 186:109453. [19] SU Chuanchu, CHEN Xizhang, GAO Chuang, et al. Effect of heat input on microstructure and mechanical properties of Al-Mg alloys fabricated by WAAM[J]. Applied Surface Science, 2019, 486:431-440. [20] CHAKKRAVARTHY V, JEROME S. Fabrication of preferentially oriented Al4043 alloy and its wear anisotropy[J]. Materials Letters, 2020, 280:128578. [21] ZHOU Yinghui, LIN Xin, KANG Nan, et al. The heterogeneous band microstructure and mechanical performance in a wire + arc additively manufactured 2219 Al alloy[J]. Additive Manufacturing, 2022, 49:102486. [22] MAIDER A, ENEKO U, IKER R, ET al. Influence of deposition strategy and heat treatment on mechanical properties and microstructure of 2319 aluminium WAAM components[J]. Materials & Design, 2022, 221:110974. [23] GENG Yanfei, PANCHENKO I, CHEN Xizhang, et al. Investigation of microstructure and fracture mechanism of Al-5.0Mg alloys fabricated by wire arc additive manufacturing[J]. Journal of Materials Engineering and Performance, 2021, 30(10):7406-7416. [24] LI Chengde, GU Huimin, WANG Wei, et al. Effect of heat input on formability, microstructure, and properties of Al-7Si-0.6Mg alloys deposited by CMT-WAAM process[J]. Applied Sciences, 2020, 10(1):70. [25] GU Jianglong, BAI Jing, DING Jialuo, et al. Design and cracking susceptibility of additively manufactured Al-Cu-Mg alloys with tandem wires and pulsed arc[J]. Journal of Materials Processing Technology, 2018, 262:210-220. [26] 李权, 王国庆, 罗志伟, 等. 2219铝合金电弧增材制造组织及力学性能的非均匀性[J]. 稀有金属材料与工程, 2020, 49(11):3969-3976. LI Quan, WANG Guoqing, LUO Zhiwei, et al. Inhomogeneity of microstructures and mechanical properties of 2219 aluminum alloy by WAAM[J]. Rare Metal Materials and Engineering, 2020, 49(11):3969-3976. [27] BACHMANN F, HIELSCHER R, SCHAEBEN H. Texture analysis with MTEX-free and open source software toolbox[J]. Solid State Phenomena, 2010, 160:63-68. [28] KRIL C E, BIRRINGER R. Estimating grain-size distributions in nanocrystalline materials from X-ray diffraction profile analysis[J]. Philosophical Magazine A, 1998, 77(3):621-640. |