
一、个人简介
谭锟,男,航空学院讲师,飞制系主任。
二、主要学习与工作经历
2012.9至2016.7 南昌航空大学科技学院飞行器制造工程学士
2016.9至2019.7 南昌航空大学航空宇航推进理论与工程硕士
2019.9至 2024.9 哈尔科夫国立航空航天大学航空航天工程博士/国家公派
2025.4至今 上海电机学院 航空学院 讲师
2025.9至今 中国商飞上海飞机制造有限公司 科技管理部 科研技术师(挂职)
三、代表性科研成果
学术成果:
1、微涡喷发动机壳体轻量化与表面强化技术研究(项目负责人),项目经费35万元。
2、航空复合材料桨叶材料与工艺技术研发。(项目参与人)
3、轻质高强耐高温复合材料设计制备与性能测试。(项目参与人)
4、含缺陷复合材料构件压缩屈曲力学行为与失效分析(项目参与人)
获奖:
1. 荣获2025年度发明协会发明创业奖创新奖 二等奖,排名第二。
论文
1. Tan, K., Markovych, S., Hu, W., Wang, Y., Shorinov, O., & Wang, Y. On the characteristics of cold spray technology and its application in aerospace industries. International Conference on Mechanical Engineering and Materials (ICMEM2020). Ser: Earth and Environmental Science. 2021. vol. 719(3), p.032023. DOI: https://doi.org/10.1088/1755-1315/719/3/032023. (Scopus);
3. Kun, T., Jie, H. W., Markovych, S., & Wang, Y. Dimet Laval nozzle expansion section analysis andoptimization. Journal of Engineering Sciences, 2021, 8(2): F6-F10. DOI: https://doi.org/10.21272/jes.2021.8(2).f2. (Scopus, SJR=0.4, Q4)
4. Kun, T., Jie, H. W., Markovych, S., & Wang, Y. Optimization of cold spray nozzles based on the response surface methodology. Journal of Engineering Sciences, 2024, 11(1): F1-F11. DOI: https://doi.org/10.21272/jes.2024.11(1).f1. (Scopus, SJR=0.4, Q4)
5. Kun, T., Jie, H. W., Shorinov, O., & Wang, Y. Simulation of the Effect of Multi-Particle Temperature on Coating Porosity Based on CEL Method. Metallofiz. Noveishie Tekhnol. 2024. 46(11). (Scopus, SJR=0.402, Q3).
6. Tan, K., Markovych, S., Hu, W., Shorinov, O., & Wang, Y. R. Review of manufacturing and repair of aircraft and engine parts based on cold spraying technology and additive manufacturing technology. Aerospace Technic and Technology, 2020 (3): 53-70. DOI: https://doi.org/10.32620/aktt.2020.3.06.
7. Tan, K., Markovych, S., Hu, W., Shorinov, O., & Wang, YR. Review of application and research based on cold spray coating materials. Aerospace Technic and Technology, 2021 (1): 47-59. DOI: https://doi.org/10.32620/aktt.2021.1.05.
8. Tan, K., Hu, W., Shorinov, O., & Wang, YR. Simulating multi-particle deposition based on CEL method: studying the effects of particle and substrate temperature on deposition. Aerospace Technic and Technology, 2024, 1(193): 64-75. DOI: https://doi.org/10.32620/aktt.2024.1.06.
9. Tan, K. Analysis of spray particles entrance of Right-angle cold spray nozzle based on CFD. Mechanics and Advanced Technologies, 2023, 7(3(99)): F1-F11. DOI: https://doi.org/10.20535/2521-1943.2023.7.3.292244.
10. Tan, K. Numerical Study on Simulating the Deposition Process of Cold Spray Multi-Particle Al6061 based on CEL Method. Mechanics and Advanced Technologies, 2024, 8(1(100)). DOI: https://doi.org/10.20535/2521-1943.2024.8.1 (100).295144.
专利
1.一种微小型航空涡轮发动机内置控制电板系统 中国专利, ZL202110530808.0授权日期2024.08.16 发明专利;
2.一种高原补氧起动的微小型航空涡轮发动机装置 中国专利, CN202121662491.8授权日期2022.01.04 实用新型专利;
3.一种微小型航空涡轮发动机内置控制电板系统 中国专利, ZL202121046672.8 授权日期2021.12.17实用新型专利。
四、研究领域
冷气动喷涂技术表面功能涂层制备及及高性能制造技术研究
五、联系方式
E-mail: tankun09@126.com


