李奋强副教授 简介
李奋强,副教授、博士,硕士生导师,福建省机械工程学会塑性工程分会常务理事。2014年获华中科技大学材料加工工程专业博士学位。2017年晋升副教授职称。2016和2018年获评厦门理工学院优秀教师荣誉称号,2024年获评厦门理工学院党员名师先锋岗。2020年获评厦门市C类人才,入选厦门市科技局、工信局技术专家库。受邀为《Material and Design》、 《International Journal of Advanced Manufacturing Technology》、《Optics and Laser Technology》等国际期刊的审稿人。
近年来主要从事材料先进成形技术及多物理场数值模拟等方面的研究工作,所在学科为福建省重点学科。先后主持完成了多项省、市课题的研究;同时,作为主要研究人员参与了国家重点研发计划(973)、国家自然科学基金项目课题的研究。在《Material and Design》、《International Journal of Advanced Manufacturing Technology》、《Journal of Engineering Manufacture》、《Journal of Mechanical Science and Technology》等国内外学术期刊和国际会议上发表论文30余篇。已授权国家发明专利3项。
主要研究领域:
[1] 难熔金属粉末电磁脉冲压制工艺、结构与性能
[2] 轻质材料电磁成形、焊接工艺及装备
[3] 柔性电路板的电磁脉冲焊接与激光钎焊技术
[4] 材料成形多物理场耦合数值模拟
近年来承担的主要科研项目:
[1]. 福建省自然科学基金项目,2021J011212,电磁脉冲径向压实中粉末力链演化及电磁柔性驱动压实机制研究,2021/10-2024/10,主持.
[2]. 国家自然科学基金面上项目,52173266,3D打印Si-Zr-O-C基仿生梯度功能复合材料及其隔热/承载性能的研究,2022/01-2025/12,参与
[3]. 福建省中青年教师教育科研项目,JA15359,TC4钛合金的动态成形性能研究,2015/06-2018/05,主持.
[4].企业委托项目,HX19099,航空电缆电磁脉冲压接数值仿真分析研究,2019/8-2020/8,主持
近年来获专利情况(排名第一):
[1].李奋强,赵军,基于电磁高能率下的薄板材料成形极限的测量装置及方法,2015.10.15,中国,201510666934.3
[2].李奋强,赵军,基于电磁高能率下的薄板材料成形极限的测量装置,2015.10.15,中国,201520798229.4
[3].李奋强,艾思奇,赵军,陈志超,一种电流辅助电磁冲裁加工装置及其控制方法,2017.6.30,中国,201710521107.4
[4].李奋强,蒋继帅,陈新宇,郑淼,一种带超声波辅助的电磁铆接装置,2022.8.24,中国,202222235841.3
[5] 李奋强,陈新宇,蒋继帅,闫飞,赵军,一种高致密零件及其压制方法、压制装置,2022.4.26,中国,202210443320 .9
[6] 李奋强,郑淼,许鸿昊,李辉,一种超声振动辅助电磁冲裁的方法,2022 .09 .01,中国,202211061484 .1
[7] 李奋强,许鸿昊,郑淼,赵军,一种轴向双向电磁脉冲压制径向高频加热成型的方法及装置2022.09.06,中国,202211082842 .7
[8]李奋强,丁杰浩,徐鑫,舒家炜,一种多喷头式多场辅助选择性激光熔化成型方法及装置2023.12.04,中国,2023116445447
[9] 李奋强,徐鑫,舒家炜,丁杰浩,一种多能场辅助电磁脉冲平板焊接方法2024.2.13,中国,202311662041.2
发表的代表性学术论著(一作或通讯):
[1] Fenqiang Li, Qianting Wang, Jiawei Shu, Hao Chen, Hui Li. Numerical simulation and experimental study on wetting of Sn-based solder for laser soldering. Journal of Mechanical Science and Technology 38 (6) 2024. (SCI)
[2] Fenqiang Li, Jishuai Jiang, Juemei Wang, Jinguo Wang, Xinyu Chen. Experimental study and numerical simulation on springback of Ti-6Al-4V alloy under hot U-bending. Journal of Mechanical Science and Technology37 (7) 2023. (SCI)
[3] Fenqiang Li, Juehao Ding, Miao Zheng, Jianlin Xu, Xiaohong Ge, Hui Li, Jun Zhao. Parameter optimization of electromagnetic pulse compaction driven by aluminum tube for tungsten copper powder. Journal of Mechanical Science and Technology 37 (5) 2023. (SCI)
[4] 陈新宇, 李奋强, 蒋继帅,数值模拟在粉末压制细观分析中的应用与发展. 粉末冶金技术:2024.42(4):418-426. (中文核心)
[5] 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(272):170372. (SCI)
[6] Fenqiang Li,Jishuai Jiang,Hongsong Cheng,Jianling Xu, Xiaohong Ge,Hui Li, Jun Zhao, Yang Ran. Optimization of the field shaper parameters in electromagnetic pulse crimping of cable, International Journal of Precision Engineering and Manufacturing, 2021. 22, 1693–1706.(SCI)
[7] Fenqiang Li,Hui Li,Xiaohong Ge, Jun Zhao, Huawei Wu,Jia Lin,Guimei Huang. Numerical simulation of magnetic pulse radial compaction of W-Cu20 powder with a field shaper. The International Journal of Advanced Manufacturing Technology, 2021, 114(1): 219-230.(SCI)
[8] 李奋强,陈新宇,蒋继帅.电磁成形技术在钛合金板材成形中的应用. 精密成形工程:2021.13(05) :43-50.(中文核心)
[9] 李奋强,洪剑彬,李辉,葛晓宏,复合材料模压成形设备机身结构力学分析与优化.机械设计与制造:2023. 12 :166-169.(中文核心)
[10] Fenqiang Li,Jianhua Mo,Jianjun Li,Jun Zhao,Formability evaluation for low conductive sheet metal by novel specimen design in electromagnetic forming,The International Journal of Advanced Manufacturing Technology,(2017).88(5):1677-1685.(SCI)
[12] Fenqiang Li,Jun Zhao,Jianhua Mo,Jianjun Li,Liang Huang,Comparative study of the microstructure of Ti-6Al-4V titanium alloy sheets under quasi-static and high-velocity bulging,Journal of Mechanical Science and Technology,(2017).31(3):1349-1356.(SCI)
[13] Fen-qiang Li,Jian-hua Mo,Jian-jun Li,Liang Hua,Experimental and numerical investigation of electromagnetic bulging of titanium alloy Ti-6Al-4V at room temperature,Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture,2015,229(10):1753-1763.(SCI)
[14] Fen-Qiang Li,Yang Fang,Ying Zhu,Jian-Hua Mo,Jianjun Li,Study on the homogeneity of deformation under electromagnetic expansion of metal tube,International Journal of Applied Electromagnetics and Mechanics,2013,42:13-25.(SCI)
[15] Fenqiang Li,Jianhua Mo,Jianjun Li,Haiyang Zhou,Liang Huang,Study on the driver plate for electromagnetic forming of titanium alloy Ti-6Al-4V,International Journal of Advanced Manufacturing Technology,2013,69(1-4):127-137.(SCI)
[16] Fen-Qiang Li,Jian-Hua Mo,Jian-Jun Li,Liang Huang,Hai-Yang Zhou,Formability of Ti–6Al–4V titanium alloy sheet in magnetic pulse bulging,Materials & Design,2013,52:337-344.(SCI)
[17] Fenqiang Li,Jianhua Mo,Haiyang Zhou,Yang Fang,3D Numerical simulation method of electromagnetic forming for low conductive metals with a driver,International Journal of Advanced Manufacturing Technology,2013,64(9-12):1575-1585.(SCI)
[18] 李奋强,赵军,蔡志超,PE100管非开挖拉管施工与供水过程有限元分析,厦门理工学院学报,2016,(5): 90-95.
[19] Fenqiang Li,Jianhua Mo,Jianjun Li,Liang Huang,Wei Fan,Jinxiu Fang,Effects of the deformation rate on the ductility of Ti-6Al-4V material,11th International Conference on Technology of Plasticity, ICTP2014,754-759,Nagoya Congress Center, Nagoya,2014.10.19-2014.10.24.
[20] 李奋强,莫健华,李建军,崔晓辉,基于电磁力驱动的TC4钛合金板胀形损伤预测,第十三届塑性加工学术年会论文集,2013.10.15-2013.10.16.
[21] Fen Qiang Li,Jian Hua Mo,Springback analysis of TC4 titanium alloy complex part with double curvature under single point incremental forming process,The 3rd International Conference on Manufacturing Science and Engineering (ICMSE2012),1094-1098,Xiamen,2012.3.27-2012.3.29.
招生信息:
每年与厦门金鹭特种合金有限公司、重庆机电研究院有限公司联合招生工程硕士研究生2-3名,欢迎机械、材料类优秀本科生报考、咨询。
喜欢招勤奋、责任感强的学生,与学生亦师亦友,共同探讨共同进步。
联系方式:
电话:13400685735
Email:lfq@xmut.edu.cn
通讯地址:福建省厦门市集美区理工路600号金沙9159游乐场(中国)有限公司-环球百科 361024