发表学术论文80余篇,出版学术专著1部,近期部分论著: 1. 《柔性板材渐进成形技术与装备》.机械工业出版社. 2020. ISBN 978-7-111-66368-3. 2. Microstructure regulation and reinforcement mechanisms of ultrafine TiC/Fe55 composite coatings via laser melting deposition. Materials & Design, 2023, 229.(中科院一区,Top期刊) 3. Wear mechanism of a laser cladded Fe-based self-lubricating composite coating for protecting counter-abrasive parts. Surface and Coatings Technology, 2023, 459. (中科院一区,Top期刊) 4. Modelling of the effects of process parameters on energy consumption for incremental sheet forming process. Journal of Cleaner Production, 2021, 250.(中科院一区,Top期刊) 5. Ultrasonic assisted incremental sheet forming: Constitutive modeling and deformation analysis. Journal of Materials Processing Technology, 2022, 299.(中科院一区,Top期刊) 6. Experimental and numerical study on the deformation mechanism of straight flanging by incremental sheet forming. International Journal of Mechanical Sciences, 2020, 160.(中科院一区,Top期刊) 7. Investigation on the material flow and deformation behavior during ultrasonic-assisted incremental forming of straight grooves. Journal of Materials Research and Technology, 2020, 9.(中科院一区,Top期刊) 8. Small data-driven modeling of forming force in single point incremental forming using neural networks. Engineering with Computers, 2020, 36.(中科院一区,Top期刊) 9. Improving the properties of remanufactured wear parts of shield tunneling machines by novel Fe-based composite coatings.Ceramics International, 2022,48.(中科院一区,Top期刊) 10. High temperature oxidation behavior and interface diffusion of Cr3C2-NiCrCoMo/nano-CeO2 composite coatings. Journal of Alloys and Compounds, 2022,905.(中科院一区,Top期刊) 11. Research on the high temperature oxidation mechanism of Cr3C2-NiCrCoMo coating for surface remanufacturing. Journal of Materials Research and Technology, 2021,10.(中科院一区,Top期刊) 12. Effect of NiCr content on the solid particle erosion behavior of NiCr-Cr3C2 coatings deposited by atmospheric plasma spraying. Surface and Coatings Technology, 2020, 381.(中科院一区,Top期刊) 参加国内外学术会议30余次,部分国际会议报告: 1. 19th International Conference on Metal Forming, Taiyuan, China, 2022. (Oral Presentation) 2. 13th International Conference on the Technology of Plasticity, United States, 2021. (Oral Presentation) 3. 18th International Conference on Metal Forming, Poland, 2020. (Oral Presentation) 4. The 26th CIRP Conference on Life Cycle Engineering, United States. 2019. (Oral Presentation) 5. 12th International Conference on the Technology of Plasticity, UK, 2017. (Oral Presentation) 授权国际发明专利4项、中国发明专利37项、软著5项,部分列表: 1.A processing platform for multi-angle double-sided incremental sheet forming with displacement compensation function, 2021363109,澳大利亚发明专利 2. 一种涂层在线滚压装置及其控制方法, 10-2445487, 韩国发明专利 3. 一种板材形表一体连续渐进成形装置及成形方法,ZL202110172714.0 4. 曲面薄壁件表面微织构自适应加工成形的工具头及方法,ZL20211124765.5 5. 一种板材连续柔性渐进成形加工装置及方法,ZL202011551766.0 6. 一种多工具头柔性渐进成型装置及方法,ZL202010921523.5 7. 一种基于等冲击角线的切向功能梯度涂层制备方法,ZL202011146427.4 8. 一种多级同步混粉器及热喷涂装置, ZL201811301762.X 9. 基于实时反馈的旋转超声复合渐进成形装置及方法,ZL201710113277.9 10. 一种发动机曲轴圆角激光熔覆修复装置及方法,ZL201710571249.1 |