教师名录
best365官方网站登录入口教授,博导,洪堡学者,国家高层次青年人才,从事复杂曲面复合材料构件微波能场增材制造以及面向功能复合材料增材制造的轻量化结构设计研究。2017年至2022年在德国卡尔斯鲁厄理工学院(KIT)亥姆霍兹国家研究中心,脉冲与微波技术研究所工作。他率先将微波技术引入连续碳纤维增强热塑性复合材料增材制造领域,获批欧盟经费超过一百万欧元,获得KIT青年教授计划(YIG Prep Pro)资助,荣获KIT“NEULAND 创新奖 ”一等奖和法国“JEC World国际复合材料创新奖入围奖”,发表40 余篇高水平英文论文,他引超过2800次,Google H因子20,授权德国、欧洲和PCT国际发明专利各1项,以及26项中国发明专利,担任2024-2025届国际生产工程院(CIRP)青年会员,2024-2025 届青年会员主席,第 13 届全球 CIRP Global Web Conference (CIRPe 2025),“面向智能制造的人工智能”大会主席,Procedia CIRP 特邀主编,Additive manufacturing,Composite Part B,Composite Science and Technology, CIRP JMST, International Journal of Machine Tools and Manufacture, Materials & Design等SCI期刊审稿人,受邀做5次大会主题报告及30余次大会报告,出版Special Issue "3D Printing: Materials, Properties, and Applications"。
Google Scholar: https://scholar.google.com/citations?user=rV8q950AAAAJ&hl=en
个人英文主页: https://nanyalee.github.io/
主要研究方向:
1. 复杂曲面复合材料构件微波能场增材制造
面向复杂曲面复合材料构件,利用微波能场瞬时,整体式和非接触加热的特点,实现高性能复合材料构件的快速制造及再制造。以6自由度机器人为增材制造平台,自主研发机器人轨迹规划及铺打一体高端装备,实现拓扑几何连续碳纤维增强复合材料的微波能场辅助增材制造。
2. 面向功能复合材料增材制造的轻量化结构设计
针对具有导电/导热/物质输运特性的随机多孔结构轻量化复合材料(细胞支架/骨骼修复/智能植入体/力学超材料)从事面向增材制造的结构设计及性能优化。
招生(26、27硕博空余紧缺)
团队国际合作交流频繁,与德国卡尔斯鲁厄理工学院,新加坡国立大学,南洋理工大学,意大利米兰理工大学,美国普渡大学,澳大利亚莫纳什大学等国外研究机构建立了持久稳固的合作关系。
鼓励自主探索,兴趣导向,瞄准高水平研究持续培养创新和解决问题的能力,形成具有行业竞争力和独立科研能力的人才。
团队氛围轻松活泼,学生自主调整科研时间及节奏,定期组织春秋游活动。
感兴趣学生可联系: nanya.li@seu.edu.cn (Email应包含: 个人简历; 成绩单; 1篇代表作全文(如有))
博士后 Post-doc:
团队长期招聘国内外博士后,欢迎感兴趣的优秀博士科研人员加入团队。
2025.11 - 至今 教授 best365官方网站登录入口
2023.01 - 2025.11 教授 南京航空航天大学
2020.10 - 2022.12 青年教授候选人(YIG Prep Pro Fellow) 德国卡尔斯鲁厄理工学院
2020.01 - 2020.09 研究员 德国卡尔斯鲁厄理工学院
2018.01- 2019.12 洪堡学者 德国卡尔斯鲁厄理工学院
《Additive manufacturing》
《International Journal of Machine Tools and Manufacture》
《Composite Part B》
《Composite Part A》
《Composite Science and Technology》
《CIRP Journal of Manufacturing Science and Technology》
《Materials & Design》
国际生产工程学院CIRP - 青年会员(RA)
江苏省研究型医院学会脑科学创新与转化专业委员会 -常委
Procedia CIRP - 特邀主编
2020 德国卡尔斯鲁厄理工学院 “NEULAND Innovation”创新一等奖
2020 法国JEC国际复合材料大会2020年度创新提名奖
2019 江苏省优秀博士学位论文
2017 德国亚历山大·冯·洪堡基金会洪堡学者基金
Zhang, Y., Li, N., 2025, Data-driven design for additive manufacturing of energy absorption lattice structures with variable density, Materials & Design, 256:114761.
Li, N., Sun, C., Zheng, H, Ong, S.K. 2025, Design optimization of graded cellular structures for additive manufacturing via differentiable Voronoi diagram, CIRP Annals.
Li, N., Sun, C., Lu, Y., Zhang, J., Li, J., 2025, FFF-based 3D printing path design of interconnected microchannel network inside continuous fibre-reinforced composites for thermal manipulation, Composite Part B, 298,112391.
Wang, T., Li, N., Yu, N., Mutilba, U., Flores, J., Wang Y., Bartolo, P., Ong, S.K., 2025, Robot-assisted additive manufacturing for aerospace applications: recent trends and its future possibilities, International Journal of Computer Integrated Manufacturing, 1-41.
Lu, J., Hong, R., Zhang, Y., Zhong, Y., Wengenmayer, L., Link, G., Li, J., Li, N., 2025, Continuous carbon fiber reinforced filaments manufactured by a cost-effective and two-step impregnation approach, Procedia CIRP, 132, 98-103.
Li, N., Link, G., Jelonnek, J. and Ong, S.K., 2023. Digital twins towards microwave-assisted 3D printing of continuous carbon fiber reinforced composites. Procedia CIRP, 119, pp.158-163.
Li, N., Link, G. and Jelonnek, J., 2022. Electroplating of 3D printed plastic component for the application of microwave filter. In 2022 IEEE MTT-S International Microwave Workshop Series on Advanced Materials and Processes for RF and THz Applications (IMWS-AMP) (pp. 1-3). IEEE.
Li, N., Link, G., Ma, J., Jelonnek, J., 2021, LiDAR based multi-robot cooperation for the 3D printing of continuous carbon fiber reinforced composite structures. Adv. Transdiscipl. Eng.. 2021,15:125-32.
Li, N., Link, G., Engler, M., Jelonnek, J., 2021, Small-size coaxial resonant applicator for microwave heating assisted additive manufacturing. IEEE Transactions on Microwave Theory and Techniques.
Li, N., Link, G., Jelonnek, J., Morais, M. V.C., Henning, F., 2021, Microwave additive manufacturing of continuous carbon fibers reinforced thermoplastic composites: Characterization, analysis, and properties. Additive Manufacturing.
Wang, T., Li, N., Link, G., Jelonnek, J., Fleischer, J., Dittus, J., Kupzik, D., 2020, Load-dependent path planning method for 3D printing of continuous fiber reinforced plastics. Composites Part A: Applied Science and Manufacturing.
Li, N., Link, G., Jelonnek, J., Heinzel, A., 2020, Production of continuous carbon fiber reinforced polyamide filaments for microwave additive manufacturing, SAMPE Europe Amsterdam Conference 2020, August, Amsterdam.
Li, N., Link, G., Jelonnek, J., 2020, Rapid 3D microwave printing of continuous carbon fiber reinforced plastics. CIRP Annals 69:221-224.
Li, N., Link, G., Jelonnek, J., 2019, 3D microwave printing temperature control method of continuous carbon fiber reinforced composites, Composite Science and Technology.
Li, N., Link, G., Ting, W., Ramopoulos, V., Neumaier, D., Hofele J., Walter, M., Jelonnek, J., 2019, Path-designed 3D printing for topological optimized continuous carbon fibre composite structures, Composite Part B: Engineering.
Li, N., Li, Y., Jelonnek, J., Link, G., Gao, J., 2017, A new process control method for microwave curing of carbon fibre reinforced composites in aerospace applications, Composites Part B: Engineering, 122:61-70.
Li, N., Li, Y., Jelonnek, J., Link, G., Gao, J., 2017, A new process control method for microwave curing of carbon fibre reinforced composites in aerospace applications, Composites Part B: Engineering, 122:61-70.
Li, N., Li, Y., Wu, X., 2017, Tool-part interaction in composites microwave curing: experimental investigation and analysis, Journal of Composite Materials, 51(26):3719-3730.
Li, N., Li, Y., Liu, S., 2016, Rapid prototyping of continuous carbon fiber reinforced polylactic acid composites by 3D printing, Journal of Materials Processing Technology, 238:218-225.
Li, N., Li, Y., Zhang, L., Hao, X., 2016, Kinetics modeling of carbon-fiber- reinforced bismaleimide composites under microwave and thermal curing, Journal of Applied Polymer Science, 133(33):1-8.
Li, N., Li, Y., Hao, X., Gao, J., 2015, A comparative experiment for the analysis of microwave and thermal process induced strains of carbon fiber/bismaleimide composite materials, Composites Science and Technology, 106:15-19.
Li, N., Li, Y., Zhou, J., He, Y., Hao, X., 2015, Drilling delamination and thermal damage of carbon nanotube/carbon fiber reinforced epoxy composites processed by microwave curing, International Journal of Machine Tools and Manufacture, 97:11-17.
Li, N., Li, Y., Hang, X., Gao, J., 2014, Analysis and optimization of temperature distribution in carbon fiber reinforced composite materials during microwave curing process, Journal of Materials Processing Technology, 214(3):544-550.
Li Y., Li, N., Zhou J., Cheng Q., 2019, Microwave Curing of Multidirectional Carbon Fiber Reinforced Polymer Composites, Composite Structures, 212:83-93.
Liu, S., Li, Y., Li, N., 2018, A novel free-hanging 3D printing method for continuous carbon fiber reinforced thermoplastic lattice truss core structures, Materials and Design, 137: 235-244.
Zhou, J., Li, Y., Li, N., Liu, S., Cheng, L., Sui, S., Gao, J., 2018, A multi-pattern compensation method to ensure even temperature in composite materials during microwave curing process, Composites Part A: Applied Science and Manufacturing, 107:10-20.
He, Y., Li, Y., Li, N., Hao, X., 2018, Online monitoring method of degree of cure during non-isothermal microwave curing process, Materials Research Express, 5(2):25-30.
He, Y., Li, Y., Li, N., 2017, Temperature-independent evanescent wave sensor made of a stress-released silica optical fiber taper, Optical Fiber Technology, 36:237-244.
Lu, Y., Li, Y., Li, N., Wu, X., 2017, Reduction of composite deformation based on tool-part thermal expansion matching and stress-free temperature theory, The International Journal of Advanced Manufacturing Technology, 88(5-8):1703-1710.
Zhou, J., Li, Y., Li, N., Hao, X., 2017, Enhanced interlaminar fracture toughness of carbon fiber/bismaleimide composites via microwave curing, Journal of Composite Materials, 51(18):2585-2595.
Wu, X., Li, Y., Li, N., Zhou, J., Hao, X., 2017, Analysis of the effect and mechanism of microwave curing on the chemical shrinkage of epoxy resins, High Performance Polymers, 29(10):1165-1174.
Hang, X., Li, Y., Hao, X., Li, N., 2017, Effects of temperature profiles of microwave curing processes on mechanical properties of carbon fibre reinforced composites, Journal of Engineering Manufacture, 231(8):1332-1340.
Zhou, J., Li, Y., Hao, X., Li, N., 2017, High-Pressure Microwave Curing Technology for Advanced Polymer Matrix Composite Materials, Proceedings of the 15th International Conference on Manufacturing Research, University of Greenwich, UK, 6:57-62.
Zhou, J., Li, Y., Li, N., Hao, X., Liu, C., 2016, Interfacial shear strength of microwave processed carbon fiber/epoxy composites characterized by an improved fiber-bundle pull-out test, Composites Science and Technology, 133:173-183.
Li, Y., Hang, X., Li, N., Hao, X., 2016, A temperature distribution prediction model of carbon fiber reinforced composites during microwave cure, Journal of Materials Processing Technology, 230:280-287.
Li Y., Li, N., Gao, J., 2014, Tooling design and microwave curing technologies for the manufacturing of fiber-reinforced polymer composites in aerospace applications. The International Journal of Advanced Manufacturing Technology, 70(1-4):591-606.
Li, N., Link, G., Jelonnek, J., 2019, Additiver Herstellungsprozess Einer Form unter Verwendung von Mikrowellenstrahlung, Mikrowellendruckvorrichtung und additive Druckvorrichtung für 3D-Druck Eines Einen Faserverbundwerkstoff Umfassenden Filamnets (Patent No.: DE102019001976A1)
Li, N., Link, G., Jelonnek, J., 2019, Additive manufacturing process of a mould using microwave radiation, microwave printing device and additive printing device for 3d printing of a filament comprising a fibre composite material (Patent No.: WO2020188075).
Li, N., Link, G., Jelonnek, J., 2019, Process for the additive manufacture of a form using microwave radiation, microwave printing device and additive printing device of a 3D printing of a filament comprising a fiber composite material (Patent No.: EP3941713B1).
Li, Y., Li, N., Liu, S., 2016, A 3D printing method of continuous fiber reinforced thermoplastic polymer composite (Patent No.: 201610683124.3).
Li, Y., Li, N., Chen,Y., Wu, X., 2014, Uniform electromagnetic field distribution method for the microwave curing of composites (Patent No.: 201410780209.4).
Li, Y., Li, N., Hang, X., Zhou, J., Wu, X, 2014, Uniform temperature distribution method and equipment for the microwave-pressure curing of composite (Patent No.: 201410295387.8).
Li, Y., Li, N., Zhou, J., Hang, X., Wu, X., 2014, Microwave curing method and apparatus for composite transmission shaft (Patent No.: 201410295222.0).
Li, Y., Li, N., Zhou, J., 2014, Microwave curing of silicon carbide reinforced metal matrix composite (Patent No.: 201410780100.0).
Li, Y., Li, N., Hang, X., Zhou, J., Wu, X., 2014, Elimination arcing of carbon fiber reinforced composite in microwave environment (Patent No.: 201410298188.2).
Li, Y., Li, N., Cheng, Y., Zhou, J., 2014, Double vacuum bag assisted microwave curing technology (Patent No.: 201410780005.0).
Li, Y., Li, N., He, Y., 2014, A real-time monitoring method of heat flux during microwave curing of composite materials (Patent No.: 201410790900.0).
Li, Y., Li, N., 2013, Method and apparatus of microwave-pressure curing high performance composite (Patent No.: 201310480701.5).
Li, Y., Li, N., Yuan, L., Jiang, Y., Zeng, X., Dong, Z., Wang, J., 2013, Microwave curing method and apparatus for fiber reinforced polymer composite (Patent No.: 201310480686.4).
Li, Y., Li, N., 2013, Manufacturing method for carbon fiber/carbon nanotube reinforced composite (Patent No.: 201310480711.9).
Li, Y., Li, N., Hang, X., 2013, Method and apparatus for curing fiber reinforced polymer composite (Patent No.: 201310006755.8).
Li, Y., Li, N., 2013, Manufacturing of carbon nanotube resin film (Patent No.: 201310214228.6).
Li, Y., Li, N., Hao, X., Hang, X., 2012, Microwave curing of composite material (Patent No.: 201210167316.0).
Li, Y., Li, N., Hang, X., Fu, C., 2012, Ultrasonic assisted microwave curing method and apparatus for fiber reinforced composite (Patent No.: 201210471213.3).
Li, Y., Li, N., Hang, X, 2011, Compaction and clipping apparatus for fiber reinforced composite prepreg (Patent No.: 201110451953).
Li, Y., Zhang, J., Li, N., Hang, X., Wan, S., 2011, Composite tooling design method for autoclave curing based on finite element analysis (Patent No.: 201110451986.0).
Li, Y., Fu, C., Zhang, J., Li, N., Hang, X., 2011, Temperature distribution compensation method of composite parts during autoclave curing (Patent No.: 201110317701.4).
Li, Y., Li, N., Zhou, J., 2017, A design method of microwave resonator to improve the uniformity of electromagnetic field distribution (Patent No.: 201710228622.3).
Li, Y., Li, N., 2016, A microwave resonant apparatus for microwave curing of composite (Patent No.: 201610126500.9).
Li, Y., Li, N., 2016, Nondestructive monitoring, real-time measuring and quick repairing of composites by microwave (Patent No.: 201610118271.6).
Li, Y., Li, N., 2016, Microwave antenna array for composite microwave curing (Patent No.: 201610126499.X).
Li, Y., Li, N., Zhou, J., 2016, Method and apparatus for directional microwave heating of composites (Patent No.: 201610118272.0).
Li, Y., Li, N., 2016, Measurement of composite cure-induced tool-part interaction (Patent No.: 201610128916.4).
Li, Y., Li, N., Zhou, J., 2016, A testing method of interface strength of microwave cured carbon fiber reinforced polymer composite (Patent No.: 201610170266.X).
Li, Y., Li, N., Hao, X., 2015, Temperature distribution prediction method of composites during microwave curing (Patent No.: 201510119075.6).
best365官方网站登录入口教授,博导,洪堡学者,国家高层次青年人才,从事复杂曲面复合材料构件微波能场增材制造以及面向功能复合材料增材制造的轻量化结构设计研究。2017年至2022年在德国卡尔斯鲁厄理工学院(KIT)亥姆霍兹国家研究中心,脉冲与微波技术研究所工作。他率先将微波技术引入连续碳纤维增强热塑性复合材料增材制造领域,获批欧盟经费超过一百万欧元,获得KIT青年教授计划(YIG Prep Pro)资助,荣获KIT“NEULAND 创新奖 ”一等奖和法国“JEC World国际复合材料创新奖入围奖”,发表40 余篇高水平英文论文,他引超过2800次,Google H因子20,授权德国、欧洲和PCT国际发明专利各1项,以及26项中国发明专利,担任2024-2025届国际生产工程院(CIRP)青年会员,2024-2025 届青年会员主席,第 13 届全球 CIRP Global Web Conference (CIRPe 2025),“面向智能制造的人工智能”大会主席,Procedia CIRP 特邀主编,Additive manufacturing,Composite Part B,Composite Science and Technology, CIRP JMST, International Journal of Machine Tools and Manufacture, Materials & Design等SCI期刊审稿人,受邀做5次大会主题报告及30余次大会报告,出版Special Issue "3D Printing: Materials, Properties, and Applications"。
Google Scholar: https://scholar.google.com/citations?user=rV8q950AAAAJ&hl=en
个人英文主页: https://nanyalee.github.io/
主要研究方向:
1. 复杂曲面复合材料构件微波能场增材制造
面向复杂曲面复合材料构件,利用微波能场瞬时,整体式和非接触加热的特点,实现高性能复合材料构件的快速制造及再制造。以6自由度机器人为增材制造平台,自主研发机器人轨迹规划及铺打一体高端装备,实现拓扑几何连续碳纤维增强复合材料的微波能场辅助增材制造。
2. 面向功能复合材料增材制造的轻量化结构设计
针对具有导电/导热/物质输运特性的随机多孔结构轻量化复合材料(细胞支架/骨骼修复/智能植入体/力学超材料)从事面向增材制造的结构设计及性能优化。
招生(26、27硕博空余紧缺)
团队国际合作交流频繁,与德国卡尔斯鲁厄理工学院,新加坡国立大学,南洋理工大学,意大利米兰理工大学,美国普渡大学,澳大利亚莫纳什大学等国外研究机构建立了持久稳固的合作关系。
鼓励自主探索,兴趣导向,瞄准高水平研究持续培养创新和解决问题的能力,形成具有行业竞争力和独立科研能力的人才。
团队氛围轻松活泼,学生自主调整科研时间及节奏,定期组织春秋游活动。
感兴趣学生可联系: nanya.li@seu.edu.cn (Email应包含: 个人简历; 成绩单; 1篇代表作全文(如有))
博士后 Post-doc:
团队长期招聘国内外博士后,欢迎感兴趣的优秀博士科研人员加入团队。
Zhang, Y., Li, N., 2025, Data-driven design for additive manufacturing of energy absorption lattice structures with variable density, Materials & Design, 256:114761.
Li, N., Sun, C., Zheng, H, Ong, S.K. 2025, Design optimization of graded cellular structures for additive manufacturing via differentiable Voronoi diagram, CIRP Annals.
Li, N., Sun, C., Lu, Y., Zhang, J., Li, J., 2025, FFF-based 3D printing path design of interconnected microchannel network inside continuous fibre-reinforced composites for thermal manipulation, Composite Part B, 298,112391.
Wang, T., Li, N., Yu, N., Mutilba, U., Flores, J., Wang Y., Bartolo, P., Ong, S.K., 2025, Robot-assisted additive manufacturing for aerospace applications: recent trends and its future possibilities, International Journal of Computer Integrated Manufacturing, 1-41.
Lu, J., Hong, R., Zhang, Y., Zhong, Y., Wengenmayer, L., Link, G., Li, J., Li, N., 2025, Continuous carbon fiber reinforced filaments manufactured by a cost-effective and two-step impregnation approach, Procedia CIRP, 132, 98-103.
Li, N., Link, G., Jelonnek, J. and Ong, S.K., 2023. Digital twins towards microwave-assisted 3D printing of continuous carbon fiber reinforced composites. Procedia CIRP, 119, pp.158-163.
Li, N., Link, G. and Jelonnek, J., 2022. Electroplating of 3D printed plastic component for the application of microwave filter. In 2022 IEEE MTT-S International Microwave Workshop Series on Advanced Materials and Processes for RF and THz Applications (IMWS-AMP) (pp. 1-3). IEEE.
Li, N., Link, G., Ma, J., Jelonnek, J., 2021, LiDAR based multi-robot cooperation for the 3D printing of continuous carbon fiber reinforced composite structures. Adv. Transdiscipl. Eng.. 2021,15:125-32.
Li, N., Link, G., Engler, M., Jelonnek, J., 2021, Small-size coaxial resonant applicator for microwave heating assisted additive manufacturing. IEEE Transactions on Microwave Theory and Techniques.
Li, N., Link, G., Jelonnek, J., Morais, M. V.C., Henning, F., 2021, Microwave additive manufacturing of continuous carbon fibers reinforced thermoplastic composites: Characterization, analysis, and properties. Additive Manufacturing.
Wang, T., Li, N., Link, G., Jelonnek, J., Fleischer, J., Dittus, J., Kupzik, D., 2020, Load-dependent path planning method for 3D printing of continuous fiber reinforced plastics. Composites Part A: Applied Science and Manufacturing.
Li, N., Link, G., Jelonnek, J., Heinzel, A., 2020, Production of continuous carbon fiber reinforced polyamide filaments for microwave additive manufacturing, SAMPE Europe Amsterdam Conference 2020, August, Amsterdam.
Li, N., Link, G., Jelonnek, J., 2020, Rapid 3D microwave printing of continuous carbon fiber reinforced plastics. CIRP Annals 69:221-224.
Li, N., Link, G., Jelonnek, J., 2019, 3D microwave printing temperature control method of continuous carbon fiber reinforced composites, Composite Science and Technology.
Li, N., Link, G., Ting, W., Ramopoulos, V., Neumaier, D., Hofele J., Walter, M., Jelonnek, J., 2019, Path-designed 3D printing for topological optimized continuous carbon fibre composite structures, Composite Part B: Engineering.
Li, N., Li, Y., Jelonnek, J., Link, G., Gao, J., 2017, A new process control method for microwave curing of carbon fibre reinforced composites in aerospace applications, Composites Part B: Engineering, 122:61-70.
Li, N., Li, Y., Jelonnek, J., Link, G., Gao, J., 2017, A new process control method for microwave curing of carbon fibre reinforced composites in aerospace applications, Composites Part B: Engineering, 122:61-70.
Li, N., Li, Y., Wu, X., 2017, Tool-part interaction in composites microwave curing: experimental investigation and analysis, Journal of Composite Materials, 51(26):3719-3730.
Li, N., Li, Y., Liu, S., 2016, Rapid prototyping of continuous carbon fiber reinforced polylactic acid composites by 3D printing, Journal of Materials Processing Technology, 238:218-225.
Li, N., Li, Y., Zhang, L., Hao, X., 2016, Kinetics modeling of carbon-fiber- reinforced bismaleimide composites under microwave and thermal curing, Journal of Applied Polymer Science, 133(33):1-8.
Li, N., Li, Y., Hao, X., Gao, J., 2015, A comparative experiment for the analysis of microwave and thermal process induced strains of carbon fiber/bismaleimide composite materials, Composites Science and Technology, 106:15-19.
Li, N., Li, Y., Zhou, J., He, Y., Hao, X., 2015, Drilling delamination and thermal damage of carbon nanotube/carbon fiber reinforced epoxy composites processed by microwave curing, International Journal of Machine Tools and Manufacture, 97:11-17.
Li, N., Li, Y., Hang, X., Gao, J., 2014, Analysis and optimization of temperature distribution in carbon fiber reinforced composite materials during microwave curing process, Journal of Materials Processing Technology, 214(3):544-550.
Li Y., Li, N., Zhou J., Cheng Q., 2019, Microwave Curing of Multidirectional Carbon Fiber Reinforced Polymer Composites, Composite Structures, 212:83-93.
Liu, S., Li, Y., Li, N., 2018, A novel free-hanging 3D printing method for continuous carbon fiber reinforced thermoplastic lattice truss core structures, Materials and Design, 137: 235-244.
Zhou, J., Li, Y., Li, N., Liu, S., Cheng, L., Sui, S., Gao, J., 2018, A multi-pattern compensation method to ensure even temperature in composite materials during microwave curing process, Composites Part A: Applied Science and Manufacturing, 107:10-20.
He, Y., Li, Y., Li, N., Hao, X., 2018, Online monitoring method of degree of cure during non-isothermal microwave curing process, Materials Research Express, 5(2):25-30.
He, Y., Li, Y., Li, N., 2017, Temperature-independent evanescent wave sensor made of a stress-released silica optical fiber taper, Optical Fiber Technology, 36:237-244.
Lu, Y., Li, Y., Li, N., Wu, X., 2017, Reduction of composite deformation based on tool-part thermal expansion matching and stress-free temperature theory, The International Journal of Advanced Manufacturing Technology, 88(5-8):1703-1710.
Zhou, J., Li, Y., Li, N., Hao, X., 2017, Enhanced interlaminar fracture toughness of carbon fiber/bismaleimide composites via microwave curing, Journal of Composite Materials, 51(18):2585-2595.
Wu, X., Li, Y., Li, N., Zhou, J., Hao, X., 2017, Analysis of the effect and mechanism of microwave curing on the chemical shrinkage of epoxy resins, High Performance Polymers, 29(10):1165-1174.
Hang, X., Li, Y., Hao, X., Li, N., 2017, Effects of temperature profiles of microwave curing processes on mechanical properties of carbon fibre reinforced composites, Journal of Engineering Manufacture, 231(8):1332-1340.
Zhou, J., Li, Y., Hao, X., Li, N., 2017, High-Pressure Microwave Curing Technology for Advanced Polymer Matrix Composite Materials, Proceedings of the 15th International Conference on Manufacturing Research, University of Greenwich, UK, 6:57-62.
Zhou, J., Li, Y., Li, N., Hao, X., Liu, C., 2016, Interfacial shear strength of microwave processed carbon fiber/epoxy composites characterized by an improved fiber-bundle pull-out test, Composites Science and Technology, 133:173-183.
Li, Y., Hang, X., Li, N., Hao, X., 2016, A temperature distribution prediction model of carbon fiber reinforced composites during microwave cure, Journal of Materials Processing Technology, 230:280-287.
Li Y., Li, N., Gao, J., 2014, Tooling design and microwave curing technologies for the manufacturing of fiber-reinforced polymer composites in aerospace applications. The International Journal of Advanced Manufacturing Technology, 70(1-4):591-606.
国际生产工程学院CIRP - 青年会员(RA)
江苏省研究型医院学会脑科学创新与转化专业委员会 -常委
Procedia CIRP - 特邀主编
Li, N., Link, G., Jelonnek, J., 2019, Additiver Herstellungsprozess Einer Form unter Verwendung von Mikrowellenstrahlung, Mikrowellendruckvorrichtung und additive Druckvorrichtung für 3D-Druck Eines Einen Faserverbundwerkstoff Umfassenden Filamnets (Patent No.: DE102019001976A1)
Li, N., Link, G., Jelonnek, J., 2019, Additive manufacturing process of a mould using microwave radiation, microwave printing device and additive printing device for 3d printing of a filament comprising a fibre composite material (Patent No.: WO2020188075).
Li, N., Link, G., Jelonnek, J., 2019, Process for the additive manufacture of a form using microwave radiation, microwave printing device and additive printing device of a 3D printing of a filament comprising a fiber composite material (Patent No.: EP3941713B1).
Li, Y., Li, N., Liu, S., 2016, A 3D printing method of continuous fiber reinforced thermoplastic polymer composite (Patent No.: 201610683124.3).
Li, Y., Li, N., Chen,Y., Wu, X., 2014, Uniform electromagnetic field distribution method for the microwave curing of composites (Patent No.: 201410780209.4).
Li, Y., Li, N., Hang, X., Zhou, J., Wu, X, 2014, Uniform temperature distribution method and equipment for the microwave-pressure curing of composite (Patent No.: 201410295387.8).
Li, Y., Li, N., Zhou, J., Hang, X., Wu, X., 2014, Microwave curing method and apparatus for composite transmission shaft (Patent No.: 201410295222.0).
Li, Y., Li, N., Zhou, J., 2014, Microwave curing of silicon carbide reinforced metal matrix composite (Patent No.: 201410780100.0).
Li, Y., Li, N., Hang, X., Zhou, J., Wu, X., 2014, Elimination arcing of carbon fiber reinforced composite in microwave environment (Patent No.: 201410298188.2).
Li, Y., Li, N., Cheng, Y., Zhou, J., 2014, Double vacuum bag assisted microwave curing technology (Patent No.: 201410780005.0).
Li, Y., Li, N., He, Y., 2014, A real-time monitoring method of heat flux during microwave curing of composite materials (Patent No.: 201410790900.0).
Li, Y., Li, N., 2013, Method and apparatus of microwave-pressure curing high performance composite (Patent No.: 201310480701.5).
Li, Y., Li, N., Yuan, L., Jiang, Y., Zeng, X., Dong, Z., Wang, J., 2013, Microwave curing method and apparatus for fiber reinforced polymer composite (Patent No.: 201310480686.4).
Li, Y., Li, N., 2013, Manufacturing method for carbon fiber/carbon nanotube reinforced composite (Patent No.: 201310480711.9).
Li, Y., Li, N., Hang, X., 2013, Method and apparatus for curing fiber reinforced polymer composite (Patent No.: 201310006755.8).
Li, Y., Li, N., 2013, Manufacturing of carbon nanotube resin film (Patent No.: 201310214228.6).
Li, Y., Li, N., Hao, X., Hang, X., 2012, Microwave curing of composite material (Patent No.: 201210167316.0).
Li, Y., Li, N., Hang, X., Fu, C., 2012, Ultrasonic assisted microwave curing method and apparatus for fiber reinforced composite (Patent No.: 201210471213.3).
Li, Y., Li, N., Hang, X, 2011, Compaction and clipping apparatus for fiber reinforced composite prepreg (Patent No.: 201110451953).
Li, Y., Zhang, J., Li, N., Hang, X., Wan, S., 2011, Composite tooling design method for autoclave curing based on finite element analysis (Patent No.: 201110451986.0).
Li, Y., Fu, C., Zhang, J., Li, N., Hang, X., 2011, Temperature distribution compensation method of composite parts during autoclave curing (Patent No.: 201110317701.4).
Li, Y., Li, N., Zhou, J., 2017, A design method of microwave resonator to improve the uniformity of electromagnetic field distribution (Patent No.: 201710228622.3).
Li, Y., Li, N., 2016, A microwave resonant apparatus for microwave curing of composite (Patent No.: 201610126500.9).
Li, Y., Li, N., 2016, Nondestructive monitoring, real-time measuring and quick repairing of composites by microwave (Patent No.: 201610118271.6).
Li, Y., Li, N., 2016, Microwave antenna array for composite microwave curing (Patent No.: 201610126499.X).
Li, Y., Li, N., Zhou, J., 2016, Method and apparatus for directional microwave heating of composites (Patent No.: 201610118272.0).
Li, Y., Li, N., 2016, Measurement of composite cure-induced tool-part interaction (Patent No.: 201610128916.4).
Li, Y., Li, N., Zhou, J., 2016, A testing method of interface strength of microwave cured carbon fiber reinforced polymer composite (Patent No.: 201610170266.X).
Li, Y., Li, N., Hao, X., 2015, Temperature distribution prediction method of composites during microwave curing (Patent No.: 201510119075.6).