
基本情况
姓名:闫飞
出生年月:1984年9月
职称:副教授
导师类别:硕士生导师
主要研究方向:汽车轻量化技术、激光焊接与增材制造、超快激光加工技术
工作单位:武汉理工大学汽车工程学院
邮箱:fyan001@whut.edu.cn
教育背景
2011.9-2015.6, 华中科技大学, 材料加工工程, 博士
2007.9-2010.5, 合肥工业大学, 材料加工工程, 硕士
2003.9-2007.6, 河南科技大学, 材料成型与控制工程, 学士
工作经历
2015.7-2016.2 中国科学院合肥物质研究院 助理研究员
2010.7-2011.8 安徽柳工起重机有限公司 设计员
奖励情况
2025年 武汉理工大学教学成果奖二等奖
学术兼职情况
担任Coatings期刊客座主编,担任焊接学报、中国激光、Mater Sci Eng A, J Mater Process Technol, Metall Mater Trans A, J Mater Sci Technol, Opt Laser Technol等国内外著名期刊的特邀审稿人。
科研项目情况
[1] 2024.1 - 2027.12, 基于能-质时空协控的钛合金激光-磁场复合深熔焊接头成形机理与性能研究, 国家自然科学基金面上项目, 主持
[2] 2024.9-2026.8, 基于合金化与能量调制的铝钢异种金属激光原位焊接方法研究,国重开放课题, 主持
[3] 2022.12-2024.11, 基于磁控冶金的钛铝合金激光选区熔化增材制造技术基础研究, 湖北省自然科学基金, 主持
[4] 2022.8-2023.12, 《无痕中空滤棒稳态成型技术的研究》包1(成型机理研究), 企业合作项目, 主持
[5] 2019.01-2020.12, 磁场辅助铝/钢异种材料激光熔钎焊界面过渡层反应机理与调控研究, 湖北省自然科学基金, 主持
[6] 2019.11-2020.10, 铜钢异种合金摆动激光焊接成形机理研究, 宿迁市宿城区重点研发项目, 主持
[7] 2017.01-2018.12, 稀土元素作用下钢/铝异种合金接头强化机理与方法, 国重开放课题, 主持
代表性学术成果
[1] Zheng S, Wang C, Gan Y, Yan F*, Huang Y. Mechanism of ultrafast laser welding defects in dissimilar materials of quartz glass to 304 stainless steel[J]. Ceramics International, 2026.
[2] Zhang W, Zhu G, Wang C, Chen H, Liu Z, Zhao Z, Yan F*. Effects of pretreated approaches on microstructure and mechanical properties of oscillating laser-welded joints in Q235B carbon steel[J]. Optics & Laser Technology, 2026, 194: 114436.
[3] Zheng S, Wang C, Yan F*, Huang Y. A study of direct welding of dissimilar materials of borosilicate glass and 304 stainless steel using a green picosecond laser[J]. Journal of Materials Research and Technology, 2026, 42, 444-453.
[4] Yan F, Chen Y, Ma S, Lin P, Hu Z, Gao Z*, Wang J, Chen H. Weld formation, microstructure and mechanical properties of laser oscillation welding of hot-dip galvanised steel sheets in a lap joint configuration[J]. Canadian Metallurgical Quarterly, 2026: 1-16.
[5] Chen Y, Xiao Y, Wang C, Yan F*, Hu Y, Liu Z. Understanding of microstructure and mechanical properties of heat-treated Ti3SiC2/Inconel 625 matrix composites manufactured by laser-directed energy deposition[J]. Journal of Materials Research and Technology, 2025, 36: 4098-4111.
[6] Hu Y, Wang C*, Liu Z, Zhao Z, Yan F*. The formation mechanism and process regulation of collapse defects in high-power laser penetration welding of 20mm thick 316L stainless steel plates[J]. International Journal of Heat and Mass Transfer, 2025, 247:127123.
[7] Yan F, Liu J, Liu G, Lin P, Gao Z*, Zhang P, Lu X, Jiang P. Weld morphology, microstructure and mechanical property of laser welded joint of Ti80 alloy[J]. Journal of Materials Research and Technology, 2025, 38:3164-3174.
[8] Zhang W, Wang C, Wu Q, Yan F*, Zhu G, Wang J. Oxide removal mechanism and process optimization during integrated pulsed-continuous laser cleaning of Q235B carbon steel[J]. Materials, 2025, 18(6): 1247.
[9] Zhang P*, Guo Y, Wei J, Yan F*, Ye C, Lu X, Jiang P, Cheng Y. On the microstructure evolution and fracture behavior of titanium alloy plates subjected to underwater explosion[J]. Journal of Materials Research and Technology, 2025, 34: 946-958.
[10] Yan F, Zhang M, Chen H*, Xiang X, Zhang Q, Chen H, Huang B, Zhang D, Wang C. Morphology, microstructure and mechanical property of laser brazing of galvanized steel in a flange butted configuration. Optics & Laser Technology, 2024, 177: 111202.
[11] Liu J, Xiao Y*, Li D, Liu B, Yan F*, Zhang S*, Zhang J. Accelerated solid-liquid interdiffusion bonding of Cu joint using a Cu10Ni alloy mesh reinforced SAC305 composite solder[J]. Journal of Materials Research and Technology, 2024, 29: 3268-3278.
[12] Li F, Ding J, Yan F*, Yue S, Wang H*, Gao Z. Investigation of laser beam welding on lap joints of Al/steel dissimilar materials subjected to alternating magnetic field. Optik, 2023: 170372.
[13] Li H*, Zhang C, Deng Y, Zhou K, Ni Z, Yan F*, Liu Q. Interfacial reactions and joint performances of high-power ultrasonic welding of aluminum to steel[J]. Journal of Materials Research and Technology, 2023, 26: 328-343.
[14] Yan F, Qin Y, Tang B, Zhou Y, Gao Z, Hu Y*, Hu C, Xiao Z, Xiao Z, Wang C. Effects of beam oscillation on microstructural characteristics and mechanical properties in laser welded steel-copper joints[J]. Optics & Laser Technology, 2022, 148: 107739.
[15] Hu C, Yan F*, Xu Y, Zhu Z, Chai F, Tao J, Xiao Z, Wang C. Effect of alternating magnetic field on microstructure and performance for dissimilar welding-brazing of galvanized steel to 6061 aluminum alloy in an overlapping configuration[J]. Optics & Laser Technology, 2022, 155: 108423.
[16] 闫飞*, 周一凡, 唐本刊, 胥永刚, 王春明. 基于磁控冶金的铝/钢异种金属焊接特性. 焊接学报, 2022, 43(5): 98-103.
[17] 张良, 闫飞*. GH909合金激光焊接接头的微观组织特征. 中国激光, 2022, 49(8): 0802004.
[18] Yan F, Zhang K, Yang B, Chen Z*, Zhu Z, Wang C. Interface characteristics and reaction mechanism of steel/Al welds produced by magnetic field assisted laser welding-brazing[J]. Optics & Laser Technology, 2021, 138: 106843.
[19] Hu C, Yan F*, Zhu Z, Xu Y, Tao J, Wang C. Effects on microstructural refinement of mechanical properties in steel‑copper joints laser welded with alternating magnetic field augmentation[J]. Materials Characterization, 2021, 175: 111059.
[20] Yan F, Luo Y, Wang C*. A study of multi-layer multi-pass laser depositing with 316L stainless steel wire[J]. Journal of Mechanical Science and Technology, 2021, 35(4): 1681-1687.
[21] Li J, Cai Y, Yan F*, Wang C*, Zhu Z, Hu C. Porosity and liquation cracking of dissimilar Nd: YAG laser welding of SUS304 stainless steel to T2 copper[J]. Optics and Laser Technology, 2020, 122: 105881.
[22] Yan F, Wang X, Chai F, Ma H, Tian L, Du X*, Wang C*, Wang W. Improvement of microstructure and performance for steel/Al welds produced by magnetic field assisted laser welding[J]. Optics and Laser Technology, 2019, 113: 164-170.
[23] Yan F, Fang X, Chen L, Wang C, Zhao J Chai F*, Wang F. Microstructure evolution and phase transition at the interface of steel/Al dissimilar alloys during Nd: YAG laser welding[J]. Optics and Laser Technology, 2018, 108: 193-201.
[24] Yan F, Du X, Chai F, Wang C, Zhuang K, Zhao J*, Wang Wei. Investigation on the microstructure and fracture behavior of super-eutectic ZA alloy welded joint by pulse fiber laser[J]. Journal of Mechanical Science and Technology, 2018, 32(6): 2747-2753.
[25] Zhan T, Chai F, Zhao J, Yan F*, Wang W. A study of microstructures and mechanical properties of laser welded joint in GH3030 alloy[J]. Journal of Mechanical Science and Technology, 2018, 32(6): 2613-2618.
[26] Yan F, Liu S, Hu C, Wang C*, Hu X. Liquation cracking behavior and control in the heat affected zone of GH909 alloy during Nd: YAG laser welding[J]. Journal of Materials Processing Technology, 2017, 244: 44-50.
[27] Yan F, Hu C, Zhang X, Cai Y, Wang C*, Wang J. Influence of heat input on HAZ liquation cracking in laser welded GH909 alloy[J]. Optics and Laser Technology, 2017, 92: 44-51.
[28] Zhao J, Zhong J, Zhou M, Chai F, Yan F*. The effect of alpha phase on flow softening and deformation of Ti–10V–2Fe–3Al[J]. Materials Science and Technology, 2017, 33(16): 1993-2003.
[29] Wang C, Cai Y, Hu C, Zhang Z, Yan F*, Hu X. Morphology, microstructure, and mechanical properties of laser-welded joints in GH909 alloy[J]. Journal of Mechanical Science and Technology, 2017, 31(5): 2497-2504.
[30] Yan F, Zhan T, Liu S, Zhu Z, Wang C* Hu X. Study on softening behavior of laser welded joint in GH909 alloy[J]. Journal of Mechanical Science and Technology 2017, 31 (11): 5459-5465.
[31] Yan F, Li R, Li J, Wang Y, Wang C*, Hu X. The effect of aging heat treatment on microstructure and mechanical properties of laser welded joints of alloy GH909[J]. Materials Science and Engineering: A, 2014, 598: 62-67.
[32] Yan F, Gu Y, Wang Y, Wang C*, Hu X, Peng H, Yao Z, Wang Z, Shen Y. Study on the interaction mechanism between laser and rock during perforation[J]. Optics and Laser Technology, 2013, 54: 303-308.
[33] Yan F, Wang G, Wang C*, Hu X, Wang Y, Tan Y, Chen Z, Li S. Microstructures and properties of laser welding joint of super-eutectic ZA alloy[J]. Materials & Design, 2013, 43: 25-30.
[34] Yan F, Wang C*, Wang Y, Hu X, Wang T, Li L, Li G. A study of the mechanism of laser welding defects in low thermal expansion superalloy GH909[J]. Materials Characterization, 2013, 78: 21-30.
[35] Yan F, Xu D, Wu S, Sun Q, Wang C*, Wang Y. Microstructure and phase constitution near the interface of Cu/3003 torch brazing using Al-Si-La-Sr filler[J]. Journal of Mechanical Science and Technology, 2012, 26(12): 4089-4096.
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