
基本情况
姓名:吴孟武
出生年月:1984年3月
职称:教授
导师类别:博士生导师、硕士生导师
主要研究方向:汽车轻量化设计与成形制造、特种制造与智能制造、汽车循环利用与再制造
工作单位:武汉理工大学汽车工程学院汽车工程系
邮箱:wumw@whut.edu.cn
教育背景
2007.09 - 2012.06,清华大学,材料科学与工程,博士
2003.09 - 2007.06,华中科技大学,材料成型及控制工程,学士
工作经历
2023.10 - 至今, 武汉理工大学汽车工程学院,教授
2016.11 - 2023.09,武汉理工大学汽车工程学院,高级工程师/副教授
2012.07 - 2016.10,中国电子科技集团第十四研究所,工程师/高级工程师
奖励情况
2025年度机械工业科学技术奖科技进步二等奖(3/10)
2024年度宁波市科学技术进步奖一等奖(4/13)
2024年度全国铸造行业“最美科技工作者”荣誉称号
学术兼职情况(如有)
中国机械工程学会铸造分会/铸造行业生产力促进中心特聘专家
《China Foundry》学术编辑
《现代铸铁》编委
《铸造》青年编委会副主任委员
《有色金属学报》中英文版青年编委
《特种铸造及有色合金》青年编委
《铸造技术》青年编委
科研项目情况
[1] 2023.01 – 2026.12,铝/铝随形流道构件一体压铸成型液固复合机理及界面控性研究,国家自然科学基金面上项目,主持
[2] 2019.01 – 2021.12,压铸镁合金缺陷带形成机理及其超声辅助调控研究,国家自然科学基金青年项目,主持
[3] 2020.05 – 2022.04,XXXXXX研究,GF项目,主持
[4] 2018.11 – 2019.10,XXXXXX研究,GF项目,主持
[5] 2025.08 – 2027.08,新能源汽车大型结构件智能缺陷检测系统开发及应用,湖北省技术创新计划项目,技术负责人
[6] 2025.08 – 2027.08,新能源汽车铝合金构件高性能铸挤复合成形技术与装备开发研究,湖北省技术创新计划项目,技术负责人
[7] 2024.09 – 2026.12,车用复杂锻件智能磁粉检测技术及装备开发,湖北省技术创新计划项目,技术负责人
[8] 2022.09 – 2024.06,新能源汽车大型复杂铝合金副车架一体成型技术及应用,湖北省重点研发计划项目,技术负责人
[9] 2021.07 – 2023.12,中重型商用车高承载智能化悬架集成制造技术及应用,湖北省重点研发计划项目,技术负责人
代表性学术成果
[1] Qi Gao, Mengwu Wu, Xunpeng Qin, Lin Hua. Spatial localization of forging surface defects based on complete and partial point cloud registration, Advanced Engineering Informatics, 2026, 70, 104221.
[2] Qing Huang, Yinqi Qiu, Mengwu Wu, Xunpeng Qin. Phase-field lattice Boltzmann study on thermoelectromagnetic convection dendrite growth of Al-Cu alloy, International Communications in Heat and Mass Transfer, 2026, 171, 110093.
[3] Hong Zheng, Changli Liu, Qi Gao, Mengwu Wu, Xunpeng Qin. Interfacial microstructure and mechanical properties of Al-Cu bimetal fabricated by liquid-solid compound casting, Journal of Materials Research, 2026, 41, 470-481.
[4] Qi Gao, Qiang Wu, Mengwu Wu, Xunpeng Qin, Lin Hua. Detection and localization system for surface defects of automotive forgings based on machine vision, Journal of Intelligent Manufacturing, 2025,https://doi.org/10.1007/s10845-025-02678-2.
[5] Qi Gao, Mengwu Wu, Xunpeng Qin, Lin Hua. Machine vision driven magnetic particle inspection technology: principles, applications and trends, Measurement Science and Technology, 2025, 37, 032001.
[6] Qi Gao, Pengfei Xing, Guanyu Jiang, Mengwu Wu. Effect of N substitution for Ni on the high-temperature oxidation resistance of GX40CrNiSi25-12 austenitic heat-resistant steel, Journal of Alloys and Compounds, 2025, 1010, 178244.
[7] Qi Gao, Pengfei Xing, Guanyu Jiang, Xiaoguang Yang, Hui Wang, Yuyuan Zhu, Mengwu Wu. Effect of Partial N Substitution for Ni on the Microstructure and Mechanical Properties of GX40CrNiSi25-12 Austenitic Heat-Resistant Steel,Journal of Materials Engineering and Performance, 2025, 34, 28475-28482.
[8] Qing Huang, Yinqi Qiu, Mengwu Wu, Xunpeng Qin. Phase-field lattice Boltzmann study on magnetic-field-assisted dendrite growth of Al-Cu alloy, Physics of Fluids, 2025, 37, 097168.
[9]Qing Huang, Mengwu Wu, Xiaoping Su, Yingcai Wang. Multi-objective optimization of low-pressure casting process for AlSi7Mg0.3 hollow castings, Materials and Manufacturing Processes, 2025, 40, 1561-1569.
[10]Changli Liu, Pengfei Xing, Hong Zheng, Qi Gao, Mengwu Wu. Interfacial microstructure and mechanical properties of A356/6061 bimetal fabricated by liquid-solid compound casting, China Foundry, 2025, 22(6), 1-10.
[11]Xiao Duan, Fulin Wen, Qin Yang, Dengzhi Zheng, Jianhui Liu, Mengwu Wu. Effect of Al-Ti-C-B-RE refiner on the microstructure and mechanical properties of Al-Cu-Mn alloy, Journal of Materials Research, 2025, 40(23), 3377-3390.
[12]Junwei Guo, Zongbin Huang, Shoumei Xiong, Mengwu Wu, Tie Xu, Optimization of T6 Heat Treatment Process Parameters for Vacuum Die-Cast AlSi10MnMg Aluminum Alloy by Orthogonal Experiments, Journal of Materials Engineering and Performance, 2025, 34, 11355-11366.
[13]Chen Liang, Pengfei Xing, Lin Hua, Mengwu Wu. Effect of Charging Modes and Parameters on Lithium Dendrite Growth Studied by Phase-Field Modeling, The Journal of Physical Chemistry C, 2025, 129(2): 1078–1088.
[14]梁辰,邢鹏飞,吴孟武,秦训鹏.锂金属电池充放电过程中锂枝晶生长与溶解的相场模拟研究.储能科学与技术, 2025, 14(5): 1829-1840.
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