崔俊佳

教授

基本情况

姓名:崔俊佳

系别:机械制造工程系

职称/职务:教授,博士生导师

湖南大学教授、博士生导师、岳麓学者、入选2023年度全球前2%顶尖科学家榜单。汽车车身先进设计制造国家重点实验室固定成员,广东省电动汽车工程技术研究中心副主任,中国机械工程学会塑性工程分会高速成形技术委员会副主任,面向汽车和航空航天等行业需求,开展先进轻量化制造技术研究,发表学术论文120余篇,获得国家发明及实用新型专利24项,软件著作权3项;积极培养高水平青年人才,所指导的博士后入选2020年度博士后创新人才支持计划;主持的科研项目合同总经费为600余万元,研究成果在沈飞、首都航天机械、上汽通用五菱、南京云海特种金属、上海宇航系统工程研究所、湖北博士隆、湖北回天新材、华菱涟源钢铁等企业推广应用,牵头制定首都航天机械有限公司企业工艺规范4项。

联系方式:cuijunjia@hnu.edu.cn

教育及工作经历

2021/01-至今,湖南大学机械与运载工程学院,教授,博士生导师;

2017/01-2020/12,湖南大学机械与运载工程学院,副教授,博士生导师;

2013/05-2017/01,湖南大学机械与运载工程学院,助理教授,硕士生导师;

2008-2012,哈尔滨工业大学,材料加工工程专业,博士。

2006-2008,哈尔滨工业大学,材料加工工程专业,硕士。

2002-2006,哈尔滨工业大学,材料成型及控制工程专业,学士。

科研项目

一、纵向课题

[1]铝合金-碳纤维薄壁管件电磁翻孔连接机理及失效行为研究;国家自然科学基金-面上项目;

[2]高强钢板热冲压三维成形极限图的构建理论与应用研究;国家自然科学基金-青年科学基金项目;

[3]异种金属管件磁脉冲焊接机理与接头性能研究;国家自然科学基金-青年科学基金项目;

[4]车身铝合金/碳纤维材料磁脉冲连接结构与工艺研究;省自然科学基金-优秀青年基金;

[5]高强钢板热变形行为研究及失效准则的建立;省自然科学基金-青年基金;

[6]复杂形状铝合金车身件复合成形关键技术研究;湖南省重点研发计划子课题;

[7]高强钢板热冲压件精确控形与控性;重庆理工大学开放基金;

[8]铝合金-钢管件异种材料磁脉冲焊接性能及界面行为研究;哈尔滨工业大学开放基金;

[9] 3A21铝合金-20#钢管件磁脉冲连接机理及界面特性研究;华中科技大学开放基金;

[10] 铝/钛板件磁脉冲固相扩散焊接机理与接头特性研究;西北工业大学开放基金;

二、企业横向课题

[1]磁脉冲车身连接技术研究;上汽通用五菱汽车股份有限公司;

[2]胶粘剂在轻量化车身上的测试应用;湖北回天新材料股份有限公司;

[3]轻量化粘接工艺在车身上的应用研究;上汽通用五菱汽车股份有限公司;

[4]汽车用钢高速拉伸性能研究;湖南华菱涟源钢铁有限公司;

[5]汽车用钢安全碰撞性能检测分析;湖南华菱涟源钢铁有限公司;

[6]汽车车身胶接样件性能评价方案研究;湖北回天新材料股份有限公司;

[7]新型电磁铆接工艺关键技术及铆接装备研究;湖北博士隆科技股份有限公司;

[8]超大直径舱段铆接装配仿真及变形分析;首都航天机械有限公司;

[9]电磁脉冲材料成型典型样件制备;哈工大机器人(岳阳)军民融合研究院;

[10]胶粘结构件复杂服役性能研究;湖北回天新材料股份有限公司;

[11]密封电磁铆接接头性能分析;首都航天机械有限公司;

[12]重型XXXX舱段装配偏差分析及容差分配;首都航天机械有限公司;

[13]多材料汽车管件结构复合连接性能研究;湖北回天新材料股份有限公司;

[14] 122毫米XX电涡流制退机研究;南京理工大学。

学术成果

一、近年来发表的期刊论文

2025年:

[1] Guodong Pang, Da Cai, Yuhang Sun, Junjia Cui, Bin Zeng, Yongcheng Lin, Guangyao Li, Hao Jiang*, Improving corrosion resistance and surface conductivity of titanium bipolar plates by CrN/CrTiN coatings[J]. Applied Surface Science, 2025: 165083.

[2]Mingjian Yuan, Gongcheng Peng, Ruru Xiao, Bing Zeng, Wenxuan Xu, Guangyao Li, Tianyu Gao, Junjia Cui, Hao Jiang*,Prediction model for 1 mm thickness A1060 aluminum and T2 copper magnetic pulse welding joints based on CNN-LSTM-AM deep learning algorithm and DeepSHAP interpretability analysis[J]. Welding in the World, 2025: 1-19.

[3]Yangfan Qin, Yuefan Jiang, Guangyao Li, Hao Jiang, Junjia Cui*, Sensitivity analysis and multi-objective optimization of electromagnetic elliptical hole flanging coil structures[J]. The International Journal of Advanced Manufacturing Technology, 2025, 140(5): 2947-2962.

[4]Jiageng Jin, Yuanna Xu, Peng Wang, Qing Wang, Guangyao Li, Junjia Cui, Hao Jiang*,Fatigue evolution behavior of flat electromagnetic self-pierce riveted CFRP/aluminum structures[J]. International Journal of Fatigue, 2025: 109261.

[5]Jiageng Jin, Jiachang Qin, Guangyao Li, Junjia Cui, Hao Jiang*, A comparative study of flat electromagnetic self-pierce riveting and pre-holed self-pierce riveting of ultra-high-strength steel and aluminum[J]. Archives of Civil and Mechanical Engineering, 2025, 25(4): 215.

[6]Jiageng Jin , Jiachang Qin, Yuanna Xu, Guangyao Li, Junjia Cui, Hao Jiang*, Novel rivet in flat electromagnetic self-piercing riveting with no concave die of CFRP/aluminum structures for enhancing performance[J]. Journal of Manufacturing Processes, 2025, 148: 160-172.

[7]Guodong Pang, Da Cai*, Hao Jiang, Junjia Cui, Guangyao Li, Y.C. Lin, Mechanisms of strain rate effect on pure Ti deformation: Application in the bipolar plates forming process[J]. Journal of Materials Processing Technology,2025,Vol.342: 118933.

[8]Da Cai, Hao Jiang, Peng Wang, Qing Wang, Weifeng Gan, Junjia Cui, Guangyao Li*, Test piece design, mechanical properties and fracture strain in two-step tensile testing of lightweight materials at high strain rates[J]. International Journal of Impact Engineering, 2025: 105431.

[9]Shanshan Chen, Da Cai, Hao Jiang, Guangyao Li, Junjia Cui*, Microstructure evolution characteristic and deformation mechanism in 5052 aluminum alloys under continuous complex loadings[J]. Materials Characterization, 2025: 115186.

[10]Dongying Dong, Jianing Zhang, Kun Chen, Zhoucheng Wu,Xu Zhang, Junjia Cui, Linjun Zeng*, Influence of sintering temperature on micro morphology and mechanical properties of CNTs/TC4 composites prepared by electromagnetic impacting[J]. Ceramics International, 2025.

[11]Yujia Zhao, Ming Lai, Yuqi Wu, Guangyao Li, Hao Jiang, Junjia Cui*,Fatigue life prediction of aluminum-steel magnetic pulse crimped joints based on point cloud measurement and gradient boosting regression trees[J]. International Journal of Fatigue, 2025: 109020.

[12]Shaoluo Wang, Xiangyu Gao, Zhiquan Huang, Hao Jiang, Guangyao Li, Junjia Cui*,Joining of large diameter thin-walled copper conduit and aluminum wire harness via magnetic pulse crimping: numerical and experimental analyses[J]. Thin-Walled Structures, 2025, 213: 113318.

[13]Junjia Cui, Wanting You, Hao Sun, Guangyao Li, Peng Wang, Qing Wang, Chenling Zheng, Chong Wang, Hao Jiang*, Magnetic pulse welding of high-strength aluminum alloy with enhanced Lorentz force via novel hollow field shaper[J]. Journal of Materials Processing Technology, 2025, 339: 118829.

[14]Yujia Zhao, Chang Chen, Guangyao Li, Hao Jiang, Junjia Cui*, Failure process and fracture surface analysis of aluminum-steel tubular joints fabricated by magnetic pulse crimping under fatigue loading[J]. Journal of Materials Research and Technology,2025,Vol.36: 1463-1474.

[15]Kangjie Tang, Xu Zhang*, Dingfeng Wu, Nan Chen, Gang Wu,Junjia Cui, Investigations on microstructure evolution and mechanical properties of 7075-T651 aluminum alloy plates under electromagnetic cold expansion[J]. Materials Today Communications, 2025, 45: 112208.

[16]Shanshan Chen, Da Cai, Hao Jiang, Junjia Cui, Guangyao Li*, Enhancing prediction for mechanical behavior in AA5052 alloy under continuous non-proportional loading: A new evolutionary model[J]. Materials Today Communications, 2025, 45: 112110.

[17]Shaoluo Wang, Xiangyu Gao, Zhiquan Huang*, Hao Jiang, Guangyao Li, Junjia Cui*, Fatigue characteristics, failure mechanism and life prediction of copper–aluminum cable joints formed by magnetic pulse crimping[J]. Engineering Failure Analysis, 2025, 174: 109483.

[18]XiaomingTu, Yuxuan Liao, Bingkun Li, Guangyao Li, Junjia Cui, Hao Jiang*, Design and optimization of rivet structures in the electromagnetic high-speed nailing process[J]. Engineering Optimization, 2025: 1-16.

[19]Huakun Deng, Duanna Liu, Hao Jiang, Guangyao Li, Junjia Cui, Xu Zhang*, Research on biaxial tensile fracture prediction of 5052 aluminum alloy on electromagnetic sheet bulging[J]. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 2025: 09544054241310331.

[20]Yangfan Qin,Changhui Ji, Hao Jiang, Yuefan Jiang, Junjia Cui, Guangyao Li*, Structural Parameter Design of Magnetic Pulse Welding Coil for Dissimilar Metal Joints: Numerical Simulation, Parameter Optimization, and Experiments[J]. Machines, 2025, 13(1): 28.

2024年:

[1]Jiageng Jin, Yuxuan Liao, Jiachang Qin, Yuanna Xu, Guangyao Li, Junjia Cui, Hao Jiang*, A novel electromagnetic self-pierce upsetting riveting with flat die for joining ultra-high strength steel and aluminum structures[J]. Journal of Materials Processing Technology, 2025, 336: 118691.

[2]Hao Sun, Yuxuan Liao, Hao Jiang, Guangyao Li, Junjia Cui*, Physics-informed neural network for velocity prediction in electromagnetic launching manufacturing[J]. Mechanical Systems and Signal Processing, 2024, 220: 111671.

[3]Hao Sun, Zhuangzhuang Hua, Hao Jiang, Dongying Dong, Guangyao Li, Junjia Cui*,Densification behavior in compaction for Cu/TiB2 composite under electromagnetic impact[J]. Advanced Powder Technology, 2024, 35(11): 104653.

[4]Kangjie Tang, Xu Zhang*, Dingfeng Wu, Dongying Dong, Huakun Deng, Junjia Cui,An experimental and theoretical investigation on residual stress of 7075-T651 aluminum alloy hole under electromagnetic cold expansion[J]. Engineering Failure Analysis, 2024, 165: 108793.

[5]Ming Lai, Shaoluo Wang*, Hao Jiang, Junjia Cui, Guangyao Li, Quality prediction for magnetic pulse crimping cable joints based on 3D vision and ensemble learning[J]. Computers in Industry, 2024, 162: 104137.

[6]Hao Sun, Weidong Du,Wanting You, Li Yang, Hao Jiang, Junjia Cui, Guangyao Li, Da Cai*, Novel multi-layer field shaper in electromagnetic manufacturing process technology of tube joining for uniform deformation[J]. Journal of Manufacturing Processes, 2024, 127: 709-723.

[7]Yujia Zhao, Quanxiaoxiao Liu, Shaoluo Wang, Zeyu Yang, Guangyao Li, Junjia Cui, Hao Jiang*,Sealing performance and joining mechanism of magnetic pulse welded joints on 3003 AI prismatic cell container for battery applications[J]. Archives of Civil and Mechanical Engineering, 2024, 24(4): 224.

[8]Hao Jiang, Weidong Du, Shaoluo Wang*, Hao Sun, Kang Luo, Guangyao Li, Junjia Cui,Innovative design of a separatable coil for tube frame structure in magnetic pulse crimping[J]. Journal of Manufacturing Processes, 2024, 125: 538-551.

[9]Hao Jiang, Weixingyu Zhou, Ming Lai, Shaoluo Wang, Xiao Liu, Guangyao Li, Junjia Cui*,Process defect analysis and visual detection of aluminum/copper cable joints with magnetic pulse crimping[J]. Thin-Walled Structures, 2024, 202: 112110.

[10]Dayong Wang, Gongcheng Peng, Shaoluo Wang*, Hao Jiang, Binbin Zhou, Guangyao Li, Junjia Cui,A novel multi-spot structure for joining aluminum and steel dissimilar thin-walled tubes by magnetic pulse crimping[J]. Thin-Walled Structures, 2024, 204: 112338.

[11]Huawu Wen, Jiageng Jin, Wei Yang, Yuxuan Liao, Guangyao Li, Junjia Cui, Hao Jiang*,Failure analysis of CFRP-aluminum electromagnetic self-pierce riveting-bonded joints subjected to highspeed loading[J]. Engineering Failure Analysis, 2024, 164: 108691.

[12]Xu Zhang, Jiawei Zhang, Yingyu Wang, Huakun Deng, Congwen Duan, Guangyao Li, Junjia Cui,Dongying Dong*, Effect of punch type on microstructure and mechanical properties of aluminum alloy structures prepared by electromagnetic riveting[J]. Archives of Civil and Mechanical Engineering, 2024, 24(3): 179.

[13]Kangjie Tang, Dingfeng Wu, Dongying Dong, Huakun Deng, Junjia Cui, Xu Zhang*,The modified Johnson-Cook constitutive model of 2A10 aluminum alloys under electromagnetic impact loading[J]. Archives of Civil and Mechanical Engineering, 2024, 24(2): 74.

[14]Yuxuan Liao, Jun Zhang, Gusheng Wu, Guangyao Li, Junjia Cui,Hao Jiang*, Effect of die misalignment on the joining quality of Al/steel self-piercing riveting structure[J]. International Journal of Material Forming, 2024, 17(2): 14.

[15]Xu Zhang*,Kangjie Tang, Dingfeng Wu,Yibo Tong, Dongying Dong, Junjia Cui, Huakun Dong, Effect of prefabricated cracks on microstructure evolution and mechanical properties of electromagnetic riveted joints[J]. Engineering Failure Analysis, 2025, 169: 109190.

[16]Dongying Dong, Rui Wang, Weiying Huang, Xu Zhang, Guangyao Li, Junjia Cui*,d Influence of discharge energy on electromagnetic compaction characteristics of copper powders with same compression amount[J]. Advanced Powder Technology, 2024, 35(1): 104319.

2023年:

[1]Yuanheng Yao; Dingding Chen; Bowei Tang; Feifei Wang; Hao Jiang; Guangyao Li; Junjia Cui*. Miniaturized S-shaped flexible magnetic pulse welding coil design for engineering applications. Journal of Manufacturing Processes, 2023, 104: 372-383.

[2] Yuanheng Yao; Ao Chen; Feifei Wang; Hao Jiang; Guangyao Li; Junjia Cui*. Mechanical properties and joining mechanisms of magnetic pulse welding joints of additively manufactured 316L and conventional AA5052 aluminum alloy. Journal of Materials Research and Technology, 2023, 26: 6146-6161.

[3] Yuxuan Liao; Hao Sun; Gusheng Wu; Changcheng Jin; Junjia Cui; Guangyao Li; Hao Jiang. Effect of rivet arrangement on fatigue performance of electromagnetic riveted joint with Φ10 mm diameter rivet. International Journal of Fatigue, 2023, 176: 107892.

[4] Yuxuan Liao; Yunbao Wang; Haozhen Qi; Guangyao Li; Junjia Cui; Hao Jiang, et al. Mechanical degradation and failure behavior of Al/steel electromagnetic assisted clinched joint in chloride salt environment. Thin-Walled Structures, 2023, 190: 110958.

[5] Chang Chen; Jiapei Zhu; Quanxiaoxiao Liu; Hao Jiang; Guangyao Li; Junjia Cui. Study on magnetic pulse spot welding process for AA5052 aluminium alloy. Journal of Manufacturing Processes, 2023, 101: 795-806.

[6] Sen Lin; Nengzhuo Chou; Yujia Zhao; Hao Jiang; Junjia Cui; Yong Cai; Guangyao Li; Yi Min Xie; Guoping Wang Topological optimization of magnetic pulse welding coils for maximizing the effective weld area with a discretized differential evolution algorithm. Journal of Materials Research and Technology, 2023.

[7] Yuanheng Yao; Ao Chen; Dayong Wang; Shaoluo Wang; Hao Jiang; Guangyao Li; Junjia Cui. Fatigue behavior of Al-CFRP spot-welded joints prepared by electromagnetic pulse welding[J]. International Journal of Fatigue, 2023, 174: 107715.

[8] Shanshan Chen; Da Cai; Hao Jiang; Guangyao Li; Junjia Cui. A new measurement technology for forming limit in aluminum alloy under biaxial dynamic loading[J]. Journal of Materials Processing Technology, 2023, 317: 117963.

2022年:

[1]Cai Da, Ou Hang, Hu Ming, Li Guangyao, Cui Junjia*. Formability evaluation of tailor rolled blank (TRB) with the forming limit margin field graph. Int J Adv Manuf Technol, 2022, 118: 4019-4030.

[2]Dongying Dong, Liming Duan, Junjia Cui, Guangyao Li, Hao Jiang, Hao Pan*. Influence of compaction temperature on the mechanical properties and micro morphology of Cu/CNTs composites prepared by electromagnetic impacting. Powder Technology 2022, 396, 433-443.

[3] Junjia Cui*, Shijin Sun, Hao An, Hang Ou, Guangyao Li, Effect of ironing on forming characteristics in the Lorentz-force-driven hole flanging process, Journal of Materials Processing Technology, 2022, 301, 117442.

[4] Yuanheng Yao, Lijun Jing, Shaoluo Wang, Guangyao Li, Junjia Cui, Xiaohan Tang, Hao Jiang*, Mechanical properties and joining mechanisms of Al-Fe magnetic pulse welding by spot form for automotive application, Journal of Manufacturing Processes, 2022, 76: 504-517.

[5] Yuanheng Yao, Junjia Cui, Shaoluo Wang, Liwang Xu, Guangyao Li, Hao Pan, Xinna Bai*, Comparison of tensile properties of carbon fiber, basalt fiber and hybrid fiber reinforced composites under various strain rates, Applied Composite Materials, 2022, 29: 1147-1165.

[6] Junjia Cui, Hao Sun, Lijun Jing, Liqiang Sun, Guangyao Li, Hao Jiang*, Failure analysis of pulse magnetic induction coil in electromagnetic riveting, Engineering Failure Analysis, 2022, 136: 106178.

[7] Quanxiaoxiao Liu, Shaoluo Wang, Guangyao Li, Junjia Cui, Yang Yu, Hao Jiang*. A sandwich structure realizing the connection of CFRP and Al sheets using magnetic pulse welding, Composite Structures, 2022, 295(1): 115865.

[8] Liao Yuxuan, Zhong Jiabao, Li Guangyao, Cui Junjia, Jiang Hao*. Influence of adhesive on dynamic performance of steel/Al electromagnetic clinched joints. Archives of Civil and Mechanical Engineering, 2022, 177 (22).

[9] Ming Lai, Xiao Liu, Shaoluo Wang, Hao Jiang, Guangyao Li, Junjia Cui*. Realizing quality inspection in magnetic pulse crimping manufacturing: Using Steger algorithm and self-attention, Journal of Materials Processing Technology, 2023, 311, 117799.

[10] Cai Da, An Hao, Li Guangyao, Cui Junjia, Jiang Hao*. Local flanging process on a curved wind deflector using electromagnetic forming. Journal of Manufacturing Processes, 2022, 84:1030-1041.

[11] Jiang Hao, Li Bingkun, Li Guangyao, Cui Junjia*. Failure behavior of electromagnetic driven nailing riveted joint for Al/steel structures subjected to fatigue loading. Engineering Failure Analysis. 2022, 132: 105941.

[12] Liu Quanxiaoxiao; Yao Yuanheng; Xia Zehua; Li Guangyao; Cui Junjia; Jiang Hao*. A Novel Method for Joining Steel/Al Tube Parts Based on Electromagnetic Force by Flat Coil. Coatings. 2022, 11: 1356.

[13] Jiang Hao; Hong Zhibo; Li Guangyao; Cui Junjia*. Numerical and experiment investigation on joining process and failure behaviors of CFRP/Al electromagnetic riveted joint. Mechanics of Advanced Materials and Structures. 2022, 29(14): 1996-2007.

[14]段丽明,洪志波,崔俊佳,李光耀,蒋浩*.AA5182铝合金板电磁冲孔质量研究.机械工程学报,2022.

2021年:

[1] Dongying Dong, Shuo Fu, Hao Jiang, Guangyao Li, Junjia Cui*. Study on the compaction characteristics of CNTs/TC4 composites based on electromagnetic warm compaction, Journal of Alloys and Compounds. 2021, 857.

[2] Da Cai, Jie Liang, Hang Ou, Guangyao Li, Junjia Cui*. Mechanical properties and joining mechanism of electrohydraulic expansion joints for 6063 aluminum alloy/304 stainless steel thin-walled pipes. Thin-Walled Structures, 161: 107427, 2021.

[3] Liming Duan, Xuerui Feng, Junjia Cui, Guangyao Li, Hao Jiang*. Effect of angle deflection on deformation characteristic and mechanical property of electromagnetic riveted joint. The International Journal of Advanced Manufacturing Technology, 112, 3529–3543(2021).

[4] Chenguang Wang, Quanxiaoxiao Liu, Guangyao Li, Junjia Cui*. Study on mechanical properties and microstructural feature of magnetic pulse welding joint between Cu and Al sheets. The International Journal of Advanced Manufacturing Technology. 113, pages1739–1751(2021).

[5] Hang Ou, Shijin Sun, Panfeng Li, Guangyao Li, Junjia Cui*. A dynamic small-size hole flanging process driven by Lorentz-force for aluminum alloys. International Journal of Material Forming. 2021: 1-12.

[6] Hao Jiang, Yuxuan Liao, Song Gao, Guangyao Li, Junjia Cui*. Comparative study on joining quality of electromagnetic driven self-piecing riveting, adhesive and hybrid joints for Al/steel structure. Thin-Walled Structures. 2021, 164: 107903.

[7] Shaoluo Wang, Yuanheng Yao, Chunhong Tang, Guangyao Li, Junjia Cui*. Mechanical characteristics, constitutive models and fracture behaviors of short basalt fiber reinforces thermoplastic composites under varying strain rates. Composites Part B: Engineering. 2021, 218: 108933.

[8] Shaoluo Wang, Shuhao Wang, Guangyao Li, Junjia Cui*. Dynamic response and fracture analysis of basalt fiber reinforced plastics and aluminum alloys adhesive joints. Composite Structures. 2021, 268: 114013.

[9] Da Cai, Chenyu Jin, Jie Liang, Guangyao Li, Junjia Cui*. Multivariate quadratic nonlinear regression model of the ultimate pull-out load of electrohydraulic expansion joints based on response surface methodology. Coatings 2021, 11, 689.

[10] Yangfan Qin , Yuxuan Liao, Guangyao Li, Junjia Cui, Hao Jiang*. Numerical Simulation and Parameter Analysis of Electromagnetic Riveting Process for Ti-6Al-4V Titanium Rivet. Coatings 2021, 11, 878.

发明专利

[1]发明专利:崔俊佳;李光耀;蒋浩;姚源恒.一种电磁脉冲焊接装置。ZL202111343072.2

[2]发明专利:蒋浩;蔡达;崔俊佳;李光耀.一种用于双层圆管的磁脉冲连接装置、方法及电涡流阻尼器。ZL202111229993.6

[3]发明专利:崔俊佳;李光耀;姚源恒.一种用于测量磁脉冲焊接速度的多普勒激光探头的工装。ZL202010941856.4

[4]发明专利:崔俊佳;李光耀;董东营.一种半自动化的基于金属基复合材料的磁脉冲温压装置。ZL202010940838.4

[5]发明专利:崔俊佳,孙光永,李光耀,胡明.一种汽车零部件热冲压破裂性能的评价方法。ZL201610319451.0

[6]发明专利:崔俊佳,李光耀,孙光永,欧航.试验方法及基于该方法的热成形起皱极限面的建立方法。ZL201610528659.3

[7]发明专利:李光耀,崔俊佳,陈乾,蒋浩.一种卡车车架磁脉冲铆接装置。ZL201610886755.5

[8]发明专利:李光耀,崔俊佳,孙光永,邓桦坤.一种金属板材高速成型极限测试方法。ZL201610201322.1

[9]发明专利:崔俊佳,李光耀,孙光永,邓桦坤,胡明.一种金属板材高速成形极限图的建立方法。ZL201610204073.1

[10]发明专利:崔俊佳,邓桦坤,李光耀,孙光永.一种金属板材高速成形极限实验装置。ZL201610201325.5

[11]发明专利:崔俊佳,孙光永,李光耀,袁伟.一种电磁脉冲径向粉末压实装置和压实方法。ZL201510765387.4

[12]发明专利:崔俊佳,柳泉潇潇,李光耀,孙光永.一种用于磁脉冲焊接的圆管对心柔性夹具。ZL201610266199.1

[13]发明专利:崔俊佳,齐麟,李光耀,孙光永.一种无头铆钉双侧加载磁脉冲铆接装置。ZL201610527190.1

[14]发明专利:崔俊佳,李光耀,孙光永,夏泽华.一种无铆钉铆接柔性化模具集成装置。ZL201610782119.8

[15]发明专利:崔俊佳,孙光永,李光耀.一种高强钢板热成形极限图的建立方法。ZL201410076641.5

[16]发明专利:崔俊佳,李光耀,孙光永.一种手持式电磁铆枪的减震隔振系统。ZL201510004467.8

[17]发明专利:崔俊佳,孙光永,李光耀.一种基于电液成形的层合板的成形装置和方法。ZL201410128254.1

[18]发明专利:崔俊佳,孙光永,李光耀.一种基于电磁成形技术的复合波纹管及其成形装置。ZL201410128175.0

[19]发明专利:崔俊佳,孙光永,李光耀.一种基于电磁成形技术的复合波纹管及其成形装置。ZL201410128175.0

[20]实用新型专利:李光耀,崔俊佳,蒋浩,廖宇轩,段丽明.一种料带卸料装置。202122494428.4.

[21]实用新型专利:崔俊佳,李光耀,姚源恒.一种用于测量磁脉冲焊接速度的多普勒激光探头的工装。202021955664.0

[22]实用新型专利:蒋浩,柳泉潇潇,崔俊佳,李光耀.一种双头电磁自冲铆枪。ZL202022857078.9

[23]实用新型专利:崔俊佳,李光耀,董东营.一种半自动化的基于金属基复合材料的磁脉冲温压装置。ZL202021968124.6

[24]实用新型专利:蒋浩,柳泉潇潇,崔俊佳,李光耀.薄壁金属管与薄壁非金属管的磁脉冲压焊混合连接装置。ZL202022901794.2

[25]软件著作权:基于电磁力驱动的自动铆接系统,蒋浩;崔俊佳;李光耀. 2020SR1852210

[26]软件著作权:智能化电磁铆接平台1.0,蒋浩;崔俊佳;李光耀. 2020SR1908221

[27]软件著作权:自动化铆接平台1.0,崔俊佳;高嵩. 2020SR0212111

奖励与荣誉

[1]获2021年中国产学研合作创新奖(个人);排名1。

[2]获Advanced In Engineering材料类关键科学国际论文奖;排名1。

[3]获Advanced In Engineering制造类关键科学国际论文奖;排名1。

[4]获首届新能源汽车技术(轻量化)创新拉力赛二等奖;排名1。

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