师资队伍

机械工程(0802)

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杨春靓

职称职务:副研究员,校聘教授,博士生导师

E-mail:chunliang.yang@bjut.edu.cn

通讯地址:机电楼208

教育和工作经历

2026.02至今 北京工业大学,校聘教授  

2024.3-2026.01 亚琛工业大学科学研究员  

2022.3-2024.3 德国联邦材料研究所,洪堡学者(Host:Prof. Michael Rethmeier  

2022.3-至今 日本横滨国立大学,客座助理教授  

2016.7-2021.6 山东大学,材料科学与工程(直博)  

2012.9-2016.6 山东大学,材料成型及控制工程(工学学士)  


Ø        2024-2026 Development of Guidelines for Part Design and Process Control in     

           Laser Transmission Welding of Foamed Injection-Molded     

           Components    

           德国联邦经济与气候保护部BMWK(主要完成人)  

Ø        2024-2025 Entwicklung eines Hochgeschwindigkeits-Laserschweißverfahrens     

           für das Fügen von Kunststoffen (High Speed Weld)  

德国研究基金DFG(主要完成人)    

Ø        2022-2024 Phase-field simulation of microstructure in electromagnetic stirring   

 laser beam welding  

德国洪堡研究奖学金项目(主持)     Ø 2024-2026 Development of Guidelines for Part Design and Process Control in 

           Laser Transmission Welding of Foamed Injection-Molded     

           Components    

           德国联邦经济与气候保护部BMWK(主要完成人)  

Ø        2024-2025 Entwicklung eines Hochgeschwindigkeits-Laserschweißverfahrens     

           für das Fügen von Kunststoffen (High Speed Weld)  

德国研究基金DFG(主要完成人)    

Ø        2022-2024 Phase-field simulation of microstructure in electromagnetic stirring   

 laser beam welding  

德国洪堡研究奖学金项目(主持)    

研究方向

外场辅助焊接/增材工艺改型:超声辅助搅拌摩擦焊,磁场辅助激光焊

焊接/增材过程的计算分析焊接/增材过程的计算流体力学模拟/有限元模拟/机器学习,动态再结晶以及金属间化合物组织析出的相场法模拟,

异质材料焊接/增材工艺异质金属的搅拌摩擦焊/激光焊/电阻点焊,异质塑料以及塑料与金属的激光透射焊接/超声波焊接

激光3D打印和微纳加工:气泡打印,激光驱动固着液滴打印,激光固化和激光3D打印等工艺过程及其多尺度数值模拟


➢外场辅助焊接/增材工艺改型:超声辅助搅拌摩擦焊,磁场辅助激光焊

➢焊接/增材过程的计算分析:焊接/增材过程的计算流体力学模拟/有限元模拟/机器学习,动态再结晶以及金属间化合物组织析出的相场法模拟,

➢异质材料焊接/增材工艺:异质金属的搅拌摩擦焊/激光焊/电阻点焊,异质塑料以及塑料与金属的激光透射焊接/超声波焊接

➢激光3D打印和微纳加工:气泡打印,激光驱动固着液滴打印,激光固化和激光3D打印等工艺过程及其多尺度数值模拟

代表性科研成果

[1]Yang C.L., Wu C.S.*, Lv X.Q.Journal of Manufacturing Processes2018; 32: 380-394.

[2]Yang C.L., Wu C.S.*, Shi L. Journal of Manufacturing Processes2018; 35: 118-126.

[3]Yang C.L., Wu C.S.*Science and Technology of Welding and Joining2019; 24: 695-705.

[4]Yang C.L., Wu C.S.*, Shi L.Science and Technology of Welding and Joining2020; 25: 345-358.

[5]Yang C.L., Wu C.S.*, Shi L.Journal of Manufacturing Processes2020;56:87-95.

[6]Yang C.L., Wu C.S.*,Shi L.Journal of Alloys and Compounds2020; 843: 156021.

[7]Yang C.L., Wu C.S.*,Gao S.Journal of Materials Research and Technology, 2021; 12: 916-929.

[8]Yang C.L., Wu C.S.*,Zhao J.J.Acta Metallurgica Sinica (English Letters), 2021; 34: 1375-1385.

[9]Yang C.L., Wu C.S.*The International Journal of Advanced Manufacturing Technology, 2022; 120: 2277-2289.

[10]Yang C.L., Wu C.S.*, Gao S.Materials Today Communications, 2022; 32: 103991.

[11]Yang C.L.*, Yang F., Meng X.M., Putra S.N., Bachmann M., Rethmeier M.Journal of Laser Applications.2023;35, 042007.

[12]Yang C.L.*, Yang F., Meng X.M., Putra S.N., Bachmann M., Rethmeier M.International Journal of Heat and Mass Transfer.2024; 218, 124754.

[13]Yang C.L., Wu C.S.,ZhaiM.*Journal of Manufacturing Processes, 2025; 151:521-537.

[14]Yang C.L.*, Yang F., Meng X.M., Putra S.N., Bachmann M., Rethmeier M.International Journal of Heat and Mass Transfer.2025; 252,127509.

[15]Zhao D.C., Guo Y.J., Wang Y.H.,Yang C.L.*,Man C., Cui Z.Y., Cui H.Z.Journal of Alloys and Compounds2025;1010,178157.

[16]ZhaiM., YinJ.L.,Yang C.L.*,Wu C.S.,SongH.T., ZhaoW.Z., ShiL., QiaoJ.N.International Journal of Heat and Mass Transfer.2025;247,127143.


[1]Yang C.L., Wu C.S.*, Lv X.Q.Journal of Manufacturing Processes2018; 32: 380-394.

[2]Yang C.L., Wu C.S.*, Shi L. Journal of Manufacturing Processes2018; 35: 118-126.

[3]Yang C.L., Wu C.S.*Science and Technology of Welding and Joining2019; 24: 695-705.

[4]Yang C.L., Wu C.S.*, Shi L.Science and Technology of Welding and Joining2020; 25: 345-358.

[5]Yang C.L., Wu C.S.*, Shi L.Journal of Manufacturing Processes2020;56:87-95.

[6]Yang C.L., Wu C.S.*,Shi L.Journal of Alloys and Compounds2020; 843: 156021.

[7]Yang C.L., Wu C.S.*,Gao S.Journal of Materials Research and Technology, 2021; 12: 916-929.

[8]Yang C.L., Wu C.S.*,Zhao J.J.Acta Metallurgica Sinica (English Letters), 2021; 34: 1375-1385.

[9]Yang C.L., Wu C.S.*The International Journal of Advanced Manufacturing Technology, 2022; 120: 2277-2289.

[10]Yang C.L., Wu C.S.*, Gao S.Materials Today Communications, 2022; 32: 103991.

[11]Yang C.L.*, Yang F., Meng X.M., Putra S.N., Bachmann M., Rethmeier M.Journal of Laser Applications.2023;35, 042007.

[12]Yang C.L.*, Yang F., Meng X.M., Putra S.N., Bachmann M., Rethmeier M.International Journal of Heat and Mass Transfer.2024; 218, 124754.

[13]Yang C.L., Wu C.S.,ZhaiM.*Journal of Manufacturing Processes, 2025; 151:521-537.

[14]Yang C.L.*, Yang F., Meng X.M., Putra S.N., Bachmann M., Rethmeier M.International Journal of Heat and Mass Transfer.2025; 252,127509.

[15]Zhao D.C., Guo Y.J., Wang Y.H.,Yang C.L.*,Man C., Cui Z.Y., Cui H.Z.Journal of Alloys and Compounds2025;1010,178157.

[16]ZhaiM., YinJ.L.,Yang C.L.*,Wu C.S.,SongH.T., ZhaoW.Z., ShiL., QiaoJ.N.International Journal of Heat and Mass Transfer.2025;247,127143.

科研项目

Ø 2024-2026 Development of Guidelines for Part Design and Process Control in Laser Transmission Welding of Foamed Injection-Molded Components 

德国联邦经济与气候保护部BMWK(主要完成人)

Ø 2024-2025 Entwicklung eines Hochgeschwindigkeits-Laserschweißverfahrens für das Fügen von Kunststoffen

 (High Speed Weld)  

德国研究基金DFG(主要完成人)

Ø 2022-2024 Phase-field simulation of microstructure in electromagnetic stirring laser beam welding 

德国洪堡研究奖学金项目(主持)


Ø        2024-2026 Development of Guidelines for Part Design and Process Control in     

           Laser Transmission Welding of Foamed Injection-Molded     

           Components    

           德国联邦经济与气候保护部BMWK(主要完成人)  

Ø        2024-2025 Entwicklung eines Hochgeschwindigkeits-Laserschweißverfahrens     

           für das Fügen von Kunststoffen (High Speed Weld)  

德国研究基金DFG(主要完成人)    

Ø        2022-2024 Phase-field simulation of microstructure in electromagnetic stirring   

 laser beam welding  

德国洪堡研究奖学金项目(主持)     Ø 2024-2026 Development of Guidelines for Part Design and Process Control in 

           Laser Transmission Welding of Foamed Injection-Molded     

           Components    

           德国联邦经济与气候保护部BMWK(主要完成人)  

Ø        2024-2025 Entwicklung eines Hochgeschwindigkeits-Laserschweißverfahrens     

           für das Fügen von Kunststoffen (High Speed Weld)  

德国研究基金DFG(主要完成人)    

Ø        2022-2024 Phase-field simulation of microstructure in electromagnetic stirring   

 laser beam welding  

德国洪堡研究奖学金项目(主持)    

获奖情况

ü 中国材料研究学会科学技术二等奖(基础研究奖)2024 (6/6)

ü  洪堡研究奖学金,2022 (1/1)  


ü        中国材料研究学会科学技术二等奖(基础研究奖)2024 (6/6)    

ü        洪堡研究奖学金,2022 (1/1)