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1. K. Zhou, J.Y. Xu, G.J. Xiao*, Y. Huang, A novel low-damage and low-abrasive wear processing method of Cf/SiC ceramic matrix composites: Laser-induced ablation-assisted grinding. Journal of Materials Processing Technology, 2022, 302: 117503. (中科院一区,Top,JCR Q2)(ESI热点、高被引论文)
2. K. Zhou, G.J. Xiao*, J.Y. Xu, Y. Huang, Material removal behavior of Cf/SiC ceramic matrix composites as a function of abrasive wear during diamond abrasive belt grinding. Wear, 2021, 486-487: 204101.(中科院一区,Top,JCR Q1)
3. K. Zhou, H.H. Ding, M. Steenbergen, W.J. Wang*, J. Guo, Q.Y. Liu. Temperature field and material response as a function of rail grinding parameters. International Journal of Heat and Mass Transfer, 2021, 175: 121366.(中科院二区,Top,JCR Q1)
4. K. Zhou, H.H. Ding, W.J. Wang*, R.X. Wang, J. Guo, Q.Y. Liu. Influence of grinding pressure on removal behaviours of rail material. Tribology International, 2019, 134: 417-426.(中科院一区,Top,JCR Q1)
5. K. Zhou, H.H. Ding, S.Y. Zhang, J. Guo, Q.Y. Liu, W.J. Wang*. Modelling and simulation of the grinding force in rail grinding that considers the swing angle of the grinding stone. Tribology International, 2019, 137: 274-288.(中科院一区,Top,JCR Q1)
6. K. Zhou, H.H. Ding, R.X. Wang, J.Y. Yang, J. Guo, Q.Y. Liu, W.J. Wang*. Experimental investigation on material removal mechanism during rail grinding at different forward speeds. Tribology International, 2020, 143: 106040.(中科院一区,Top,JCR Q1)
7. K. Zhou, J.F. Liu, G.J. Xiao*, Y. Huang, K.K. Song, J.Y. Xu, B.Q. Chen. Probing residual stress evolution of titanium alloy due to belt grinding based on molecular dynamics method. Journal of Manufacturing Processes, 2021, 66: 446-459. (中科院二区,JCR Q2)
8. K. Zhou, H.H. Ding, W.J. Wang*, J. Guo, Q.Y. Liu, Surface integrity during rail grinding under wet conditions: Full-scale experiment and multi-grain grinding simulation. Tribology International, 2022, 165: 107327.(中科院一区,Top,JCR Q1)
9. K. Zhou, J. Xu, G. Xiao*, Y. Huang, Enhancing ductile removal of Cf/SiC composites during abrasive belt grinding using low-hardness rubber contact wheels. Ceramics International, 2022, 48 (18): 26042-26054.(中科院一区,Top,JCR Q1)
10. G. Xiao, Y. He, K. Zhou*, S. Zhu, S. Song, K. Song, A study on aerodynamic performance of different bionic structured surfaces via belt grinding. Journal of Bionic Engineering, 2021,18(5): 1179-1191.(中科院二区,JCR Q2)
11. K. Zhou, G. Xiao*, J. Xu, Y. Huang, Wear evolution of electroplated diamond abrasive belt and corresponding surface integrity of Inconel 718 during grinding. Tribology International, 2023, 177:107972.(中科院一区,Top,JCR Q1)(ESI高被引论文)
12. Y. Liu, J. Xu, K. Zhou*, S. Li, Y. Huang, G. Xiao**, Numerical and experimental investigation on temperature field during belt grinding considering elastic contact. Case Studies in Thermal Engineering, 2022, 40: 102555.(中科院二区,JCR Q1)
13. G. Xiao, Y. Zhang, B. Zhu, H. Gao, Y. Huang, K. Zhou*, Wear behavior of alumina abrasive belt in creep feed grinding and its effect on surface integrity of titanium alloy. Wear, 2023, 514-515: 204581.(中科院一区,Top,JCR Q1)
14. Y. Liu, S. Song, G. Xiao, Y. Huang, K. Zhou*, A high-precision prediction model for surface topography of abrasive belt grinding considering elastic contact, The International Journal of Advanced Manufacturing Technology, 2022, 125: 777-792. (中科院三区,JCR Q2)
15. Y. Liu, J. Xu, G. Xiao*, K. Zhou**, G. Liu, Thermo-mechanical coupling during belt grinding and corresponding surface integrity of titanium alloy. The International Journal of Advanced Manufacturing Technology, 2022, 121: 6599-6609.(中科院三区,JCR Q2)
16. G. Xiao, Z. Yang, K. Zhou*, X. Li, Subsurface damage inhibiting and synchronous removal behavior of Cf/SiC composites with laser-induced controllable ablation during abrasive belt grinding. Applied Surface Science, 2023, 639: 158283.(中科院一区,Top,JCR Q1)
17. K. Zhou, G. Xiao*, Y. Huang, Fabricating physicochemical microstructures with super hydrophilicity on Cf/SiC composites surface via picosecond-laser induced ablation. Ceramics International, 2023, 49 (21): 34291-34302.(中科院一区,Top,JCR Q1)
18. G. Xiao, X. Li, K. Zhou*, Z. Yang, Comprehensive investigation into grinding characteristics and damage behavior of Cf/SiC composite modified by picosecond-laser ablating. Composite Structures, 2023, 325: 117600.(中科院一区,Top,JCR Q1)
19. K. Zhou, G. Xiao, Y. Huang, Understanding machinability improvements and removal mechanism of ceramic matrix composites during laser-ablating assisted grinding. Wear, 2024, 538-539: 205199.(中科院一区,Top,JCR Q1)
20. K. Zhou, X. Li G. Xiao, Yun Huang, The critical role of machining-induced damages in tribological and wear behavior of Cf/SiC composite. Friction, 2025, 13: 9440932. (中科院一区,Top,JCR Q1)
21. G. Xiao, Z. Yang, K. Zhou*, Y. He, X. Li, The significant improvement of machinability of Cf/SiC composites through matching laser scanning spacing and abrasive belt grain size, Chinese Journal of Aeronautics, 2024, 38: 103017. (中科院一区,Top,JCR Q1)
22. G. Xiao, X. Li, K. Zhou*, Y. He, Z. Yang, Reducing Cf/SiC composite damages through collaborative control of laser ablating depth and grinding modes. Composite Structures, 2024, 339: 118158. (中科院二区,Top,JCR Q1)
23. Z. Yang, K. Zhou*, J. Wu, X, Chen, Y. Huang, Understanding laser ablating mechanism of Cf/SiC composites: Micro heat transfer and subsurface microstructure transformation. Applied Surface Science, 2024, 681: 151514 (中科院二区,Top,JCR Q1)
24. Z. Liu, K. Zhou*, J. Zhu, Z. Liao, L. Zou, D. Xu**, Fabricating ultra wear-resistant surfaces on titanium alloy by combining laser-induced modification with abrasive belt grinding. Tribology International, 2024, 200: 110160. (中科院一区,Top,JCR Q1)
25. W. Mao, K. Zhou*, Intelligent identification of machining damage in ceramic matrix composites based on deep learning. Composites Part A-Applied Science and Manufacturing, 2024, 187: 108487. (中科院一区,Top,JCR Q1)
26. J. Huang, K. Zhou*, Probing wear mechanism of Ti6Al4V micro-textured surfaces processed by laser-assisted grinding. Journal of Alloys and Compounds, 2024. (中科院一区,Top,JCR Q1)
27. 周坤, 王文健*, 刘启跃, 郭俊. 钢轨打磨机理研究进展及展望.中国机械工程, 2019,30(3): 284-294. (EI)
28. 吴婧, 周坤*, 江桂云, 黄云. SiCf/SiC复合材料激光诱导烧蚀辅助砂带磨削机理与工艺性能评价.机械工程学报 2024. (EI)