商震,男,副教授,博士生/硕士生导师,1992年8月生人,英国曼彻斯特大学联合培养博士(合作导师:任雷 教授),吉林大学汽车工程学院本、硕博连读学生。2021年8月入职吉林大学鼎新学者博士后(合作导师:任露泉 院士)。长期从事仿生柔性驱动、高效能仿生型储热材料领域研究。
主持国家自然科学基金青年基金、吉林省自然科学基金(面上项目)、国防科技重点实验室基金、国家自然科学基金联合基金校内子项等;发表SCI论文20余篇,包括Journal of Cleaner Production、Energy等中科院1区top期刊7篇;授权发明专利6件;《上海航天(中英文)》期刊青年编委。
邮箱:shangzhen@jlu.edu.cn
地址:吉林省长春市人民大街5988号吉林大学南岭校区仿生楼
招生专业:仿生科学与工程、机械(专硕/工程博士)
欢迎仿生、农机、机械、汽车、材料等相关专业的优秀学生报考

教育背景
2024.09-至今 吉林大学 副教授
2024.04-2024.09 吉林大学 讲师
2021.08-2024.04 吉林大学 鼎新学者博士后
2015.09-2021.06 吉林大学 动力工程及工程热物理 硕博连读研究生
2019.11-2020.10 曼彻斯特大学 机械、航空航天和土木工程学院 联合培养博士生
2012.09-2015.06 吉林大学 热能与动力工程(发动机) 本科学士
主持科研项目
1. 国家自然科学基金委青年科学基金:仿生多孔骨架复合相变材料构建关键技术及其动力电池温控机制(52505310),30万元,2026.01-2028.12
2. 吉林省自然科学基金面上项目:高导热仿生分级多孔骨架复合相变材料设计及可控制备(20240101124JC),12万元,2024.01-2026.12
3. 国防科技重点实验室基金:仿生防污防腐一体化涂层技术(61420052021KJW30),10万元,2021.12-2023.11
4. 国家自然科学基金联合基金校内子项:人形机器人机构的仿生设计理论与方法,90万元,2026.01-2029.12
5. JKW校内子项:2023G944J00053子项目12,90万元,2022.12-2025.11
代表性论文
1. Xueli Zhou, Hongpei Liu, Yuyang Zhang, Zhen Shang*, Zhihui Qian*, Qingping Liu,Chao Xu, Lei Ren, Luquan Ren. From shear-induced nacre-like architecture to programmable actuation: 3D printed carbon fiber/graphene reinforced composite films for adaptive smart structures. Chemical Engineering Journal, 2026, 543: 178419. SCI: 1区, Top期刊
2. Ziyuan Li, Yangjun Wang, Huan Wang, Shuai Zhang, Zhen Shang*, Limei Tian*, Yuying Yan. Enhancing the thermal cyclic reliability of salt-based shape-stabilized phase change materials by in-situ SiO2–C interconnectivity in rice husk carbon. Journal of Cleaner Production, 2024, 466: 142864. SCI: 1区, Top期刊
3. Huan Wang, Ziyuan Li, Zhen Shang*, Limei Tian*, Shuai Zhang, Yuying Yan. Analysis of the heat transfer and anti-corrosion performance of an aluminum nitride porous ceramic skeleton with controllable preparation. Applied Thermal Engineering, 2024, 244: 122687. SCI: 1区, Top期刊
4. Ziyuan Li, Limei Tian*, Zhen Shang*, Yangjun Wang, Huan Wang, Shuai Zhang, Yuying Yan. Preparation and performance improvement of phase change materials with Skin-Flesh structure inspired by loofah. Applied Thermal Engineering, 2023, 234: 120973. SCI: 1区, Top期刊
5. Huan Wang, Ziyuan Li, Zhen Shang*, Limei Tian*. Preparation of porous SiC ceramics skeleton with low-cost and controllable gradient based on liquid crystal display 3D printing. Journal of the European Ceramic Society, 2022, 42: 5432-5437. SCI: 1区, Top期刊
6. Zhen Shang, Xiumin Yu*, Lei Ren, GuowuWei, Guanting Li, Decheng Li, Yinan Li. Comparative study on effects of injection mode on combustion and emission characteristics of a combined injection n-butanol/gasoline SI engine with hydrogen direct injection. Energy, 2020, 213: 118903. SCI: 1区, Top期刊
7. Zhen Shang, Xiumin Yu⁎, Weibo Shi, Shan Huang, Guanting Li, Zezhou Guo, Fengshuo He. Numerical research on effect of hydrogen blending fractions on idling performance of an n-butanol ignition engine with hydrogen direct injection. Fuel, 2019, 258: 116082. SCI: 1区, Top期刊
8. Zhen Shang, Xiumin Yu*, Luquan Ren, Ziyuan Li, Huan Wang, Yinan Li, Yangjun Wang. Synergic effect of hydrogen and n-butanol on combustion and emission characteristics of a hydrogen direct injection SI engine fueled with n-butanol/gasoline. International Journal of Hydrogen Energy, 2024, 49: 945-956.
9. Zhe Zhao, Yan Huang, Zhen Shang*, Xiumin Yu, Ping Sun, Luquan Ren, Tao Sang, Ming Li, Ziyuan Li. Experimental study on combustion and emission of ternary-fuel combined supply SI engine with oxyhydrogen/butanol/gasoline at different excess air ratios. Case Studies in Thermal Engineering, 2023, 49: 103319.
10. Huan Wang, Ziyuan Li, Zhen Shang*, Limei Tian*. Repair of surface cracks in 3D-printed porous ceramic skeletons after sintering. Journal of Materials Science, 2023, 58: 5149-5162.
代表性发明专利
1. 一种利用高固含量/低透光度碳基浆料通过光固化3D打印制备多孔碳骨架的方法, 发明专利授权, ZL202211141359.1, 2023-03-31.
2. 一种异质双向梯度孔径多孔陶瓷的3D打印制备方法及装置, 发明专利授权, ZL202111404161.3, 2022-09-13.
3. 一种具有微结构表面的高导热碳基多孔骨架及其制备方法, 发明专利授权, ZL202211127137.4, 2023-06-06.
4. 一种高强度的多孔碳化硅陶瓷材料及其制备方法, 发明专利授权, ZL202111404139.9, 2022-08-30.
5. 一种高强度的熔融金属过滤用多孔碳化硅陶瓷及其制备方法, 发明专利授权, ZL202111404168.5, 2022-10-04.