信息来源: 发布日期:2024-03-19
MouGangMail@163.com; MouGang@fzu.edu.cn
2007.9~2011.6 在四川大学攻读金属材料工程,获工学学士学位2011.9~2014.6 在四川大学攻读材料工程,获工学硕士学位2014.7~2016.2 在云南省建筑科学研究院新技术所工作2016.4~2020.6 在上海交通大学攻读材料科学与工程,获工学博士学位
[1]福建省机械工程学会焊接分会副理事长[2]泉州市装备制造业协会副秘书长
[1]增材制造技术[2]电子封装技术[3]机械设计及其自动化
[1]国家自然科学基金面上项目,新型无铜树脂基制动材料摩擦膜生成、演变机理与调控策略研究,2023.01-2026.12,在研,参与。[2]泉州市2023年度第一批泉州市高层次人才创新创业项目,基于增材制造的多样性金属鞋底模轻量化成型技术研发,2023.01-2025.12,在研,主持。[3] 福建省工业科技重大专项,高性能医用钛基材料制备关键技术与产业化, 2022.09-2025.12在研,参与。[4]福建省财政厅科研专项,高端装备关键零部件增材制造技术研究,2021.11-2024.10,在研,参与。[5]闽都创新实验室自主部署科研项目,抗菌双相不锈钢复杂零部件激光增材制造关键技术研究,2021.06-2024.05,在研,参与。[6]福建省增材制造创新中心2021年度开放基金重点项目,电弧增材制备钛/钢梯度材料的界面组织调控机理研究,2022.01-2025.01,在研,主持。[7]福建省自然科学基金青年项目,钛/钢变极性电弧钎焊接头中脆性相的形成及磁控机理研究,2021.11-2024.11,在研,主持。
[1] G. Mou, H. Sheng, H. Xiang, C. Shen, K. Zheng, Y. Ding, X. Hua, Fabrication of TA2–304 SS laminated metal composite using directed energy deposition-arc: Microstructure, mechanical property, and corrosion resistance, Materials Characterization, 207 (2024) 113529.[2] 牟刚, 何伦, 郑开魁, 沈忱, 向红亮, 马鑫磊, 钢铜磁脉冲接头微观组织演化机理及数值模拟, 机械工程学报, 59 (2023) 364-374.[3] K. Zheng, C. Yao, G. Mou, H. Xiang, Prediction of Weld Bead Formation of Duplex Stainless Steel Fabricated by Wire Arc Additive Manufacturing Based on the PSO-BP Neural Network, journal of marine science and application, 22 (2023) 311-323.[4] K. Zheng, Z. Yang, G. Mou, Effect of inertia friction welding speed on microstructure and mechanical properties of 2205/316L stainless steel joints, Materials Today Communications, 35 (2023) 106226.[5] W. Zhao, H. Xiang, R. Yu, G. Mou, Effects of laser scanning speed on the microstructure and mechanical properties of 2205 duplex stainless steel fabricated by selective laser melting, Journal of Manufacturing Processes, 94 (2023) 1-9.[6] K. Wu, X. Hua, C. Shen, Y. Ding, J. Xin, G. Mou, L. Wang, Y. Zhang, W. Zhou, K.M. Reddy, Effect of variable polarity during cold metal transfer on microstructure and mechanical properties of directed energy deposition-arc built 2209 duplex stainless steel, Additive Manufacturing, 75 (2023) 103750.[7] G. Mou, L. He, H. Xiang, W. Lin, Interface formation and defect elimination mechanism of T2/304L interface during electromagnetic pulse welding process, Materials Letters, 349 (2023) 134708.[8] 张跃龙, 孔谅, 牟刚, 李芳, 成家林, 李亚军, 华学明, 王敏, 厚壁焊接钛管的等离子填丝+脉冲TIG双枪焊接工艺研究_张跃龙, 电焊机, 51 (2021) 27-32.[9] P. Xu, X. Hua, C. Shen, G. Mou, F. Li, Formation of Fe5Si3 precipitate in the Fe2Al5 intermetallic layer of the Al/ steel dissimilar arc welding joint: A transmission electron microscopy (TEM) study, Materials, (2021).[10] C. Shen, K.-D. Liss, M. Reid, Z. Pan, X. Hua, F. Li, G. Mou, Y. Huang, B. Dong, D. Luo, H. Li, Effect of the post-production heat treatment on phase evolution in the Fe3Ni–FeNi functionally graded material: An in-situ neutron diffraction study, Intermetallics, 129 (2021) 107032.[11] G. Mou, K. Zheng, C. Shen, H. Xiang, X. Hua, L. He, Microstructure investigation and fracture mechanism of TC4−304L dissimilar joints fabricated by the cold metal transfer arc-brazing method, Journal of Materials Research and Technology, 15 (2021) 6758-6768.[12] Y. Huang, X. Hua, C. Shen, F. Li, Y. Ding, G. Mou, Metal evaporation flux across Knudsen layer in laser keyhole welding of Al–Mg alloys with pressure balance condition method, Applied Surface Science, 536 (2021) 147838.[13] 牟刚, 华学明, 徐小波, 王欢, 李芳, 王敏, 8mm厚TC4钛合金TIG...IG焊接工艺及性能对比研究, 电焊机, 50 (2020) 70-76.[14] P. Xu, X. Hua, N. Chen, G. Mou, X. Ji, F. Li, Effect of the microstructure of IMCs and zinc accumulation on the mechanical properties of aluminum/galvanized steel joints in the VP-CMT process, Journal of Manufacturing Processes, 58 (2020) 894-904.[15] C. Shen, M. Reid, K.-D.L.X. Hua, Z. Pan, G. Mou, Y. Huang, H. Li, In-situ neutron diffraction study on the high temperature thermal phase evolution of wire-arc additively manufactured Ni53Ti47 binary alloy, Journal of Alloys and Compounds, 843 (2020) 156020.[16] C. Shen, K.-D. Lissd, M. Reid, Z. Pan, X. Hua, F. Li, G. Mou, Y. Huang, Y. Zhu, H. Li, Fabrication of FeNi intermetallic using the wire-arc additive manufacturing process: A feasibility and neutron diffraction phase characterization study, Journal of Manufacturing Processes, 57 (2020) 691-699.[17] C. Shen, X. Hua, M. Reid, K.-D.L.G. Mou, Z. Pan, Y. Huang, H. Li, Thermal induced phase evolution of Fe-Fe3Ni functionally graded material fabricated using the wire-arc additive manufacturing process: An in-situ neutron diffraction study, Journal of Alloys and Compounds, (2020).[18] G. Mou, X.M. Hua, C. Shen, M. Wang, Effects of thermal distribution strategy on a Ti-6Al-4V/304L dissimilar joint fabricated using the variable polarity cold metal transfer arc-brazing method, Materials & Design, 191 (2020) 108619.[19] G. Mou, X. Hua, M. Wang, Y. Huang, F. Li, W. Huang, Effect of axial magnetic field on cold metal transfer arc-brazing of Ti6Al4V to 304L steel, Journal of Materials Processing Technology, 275 (2020) 116322.[20] G. Mou, X. Hua, Y. Huang, C. Shen, M. Wang, Study on the microstructure optimization and mechanical properties of dissimilar TC4-304L arc-brazing joints, Materials Science and Engineering A, 788 (2020) 139566.[21] Y. Huang, X. Hua, F. Li, C. Shen, G. Mou, B. Tang, Spatter feature analysis in laser welding based on motion tracking method, Journal of Manufacturing Processes, 55 (2020) 220-229.[22] G. Mou, X. Hua, D. Wu, Y. Huang, W. Lin, P. Xu, Microstructure and mechanical properties of cold metal transfer welding-brazing of titanium alloy (TC4) to stainless steel (304L) using V-shaped groove joints, Journal of Materials Processing Technology, 266 (2019) 696-706.[23] G. Mou, X. Hua, M. Wang, F. Li, Effects of Ni addition on removing Fe-Ti intermetallic compounds in cold metal transfer arc-brazed TC4/304L dissimilar joints, Journal of Manufacturing Processes, 38 (2019) 104-112.
1、福建省引进人才2、泉州市高层次人才第四层次。
1、增材制造技术2、电子封装技术3、机械设计及其自动化
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