一、部分代表期刊論文: 1. 劉云海,鄭杜塬,祝效華.基于CFD-DPM-MD模擬壓裂管匯緩沖彎頭的沖蝕磨損行為及作用機(jī)理[J].機(jī)械工程學(xué)報(bào),2025 2. Yunhai Liu, Li X, Xu P, et al. Recent advances and challenges in tribology of diamond-like carbon films: A critical review[J]. Diamond and Related Materials, 2025: 112206. (SCI, 綜述論文, IF: 5.1) 3. Yunhai Liu, Xie J, Tang L. Design and evaluation method of erosion-resistant and wear-resistant CoCrFeMnNi high-entropy alloy coating based on molecular dynamics simulation and machine learning[J]. Corrosion Science, 2025: 113048. (SCI, 中科院一區(qū), IF: 8.5) 4. Yunhai Liu, Zheng D, Liu T. Multiscale interface effects in solid-liquid coupled erosion: A study on dynamics in the intersection region of fractured manifolds[J]. Tribology International, 2025: 111248. (SCI, 中科院一區(qū), IF: 6.9) 5. Yunhai Liu, Li X, Zhu X, et al. Microscale Tribological Behavior and Mechanism of Diamond-Like Carbon (DLC) Coatings on Fracturing Pump Plunger Surfaces in Different Fracturing Fluid Environments[J]. Tribology International, 2025: 111557. (SCI, 中科院一區(qū), IF: 6.9) 6. Yunhai Liu, He Y, Liu L, et al. Friction and wear mechanisms of H-DLC films with different hydrogen contents in nitrogen and oxygen atmospheres: Insights from reactive molecular dynamics[J]. Tribology International, 2025: 110896. (SCI, 中科院一區(qū), IF: 6.9) 7. Yunhai Liu, Xie J. Multiscale CFD-MD coupled investigation of dynamic erosion behavior in throttling valves and the microstructural response of WC materials[J]. Powder Technology, 2025: 122056. (SCI, 中科院二區(qū), IF: 4.6) 8. Yunhai Liu, Liu L, Zhang H, et al. Study on the friction behavior and mechanism of DLC films in waxy oil extraction environment based on reactive Molecular dynamics[J]. Langmuir, 2025, 41(7): 4457-4470. (SCI, 中科院二區(qū), IF: 3.9) 9. Yunhai Liu, Li X, Xu P, et al. Impact of Extreme Conditions of High Load-Speed Coupling on the Friction Behavior and Microscopic Mechanism of DLC Films in CO2 Fracturing Environments[J]. Langmuir, 2025, 41(31): 20904-20916. (SCI, 中科院二區(qū), IF: 3.9) 10. Yunhai Liu, He Y. Atomic effect and mechanism of different hydrogen content on superlubricity properties of H-DLC films. Applied Surface Science, 2025, 679: 161211. (SCI, 中科院二區(qū), IF: 6.9) 11. Yunhai Liu, Liu L, Zhu X, et al. What determines the low-friction mechanism of the silicon-doped diamond-like carbon film in a water environment: an atomic-level understanding[J]. Langmuir, 2024, 40(20): 10449-10459. (SCI, 中科院二區(qū), IF: 3.9) 12. Yunhai Liu, Zheng D, Liu T. Exploring the effect of Ti doping on the friction characteristic of DLC films on the surface of pump plunger in petroleum extraction environments[J]. Ceramics International, 2024, 50(23): 51525-51539. (SCI, 中科院二區(qū), IF: 5.6) 13. Yunhai Liu, Zhang H, et al. Probing the low friction mechanism of hydrogen-free DLC film in oxygen and nitrogen environments by first-principles calculations and molecular dynamics simulation[J]. Surface and Coatings Technology, 2023: 129219. (SCI, 中科院二區(qū), IF: 5.4) 14. Yang W, Tang L, Yunhai Liu*, et al. Atomic erosion behavior and influence mechanism during erosion impact of TiC coatings with different crystal faces in oil production environment: A molecular dynamics simulation[J]. Tribology International, 2024, 193: 109320. (SCI, 中科院一區(qū), IF: 6.9) 15. Xu P, Liu Y, Yunhai Liu*. Effect of temperature on the friction behavior and mechanism of DLC film in CO2 foam fracturing environment[J]. Tribology International, 2024, 198: 109927. (SCI, 中科院一區(qū), IF: 6.9) 16. Luo Y, Zhu X, Yunhai Liu*, et al. Effect of oil-based drilling fluid on the evolution of friction interface: A reactive molecular dynamics study at different temperatures[J]. Tribology International, 2023, 188: 108820. (SCI, 中科院一區(qū), IF: 6.9) 17. Zhu X, Wang X, Yunhai Liu*, et al. The Synergistic Lubrication Mechanism of the Interfacial Distribution between Graphene and Solid Particles in the Water-based Lubrication System: an Atomic Scale Interpretation[J]. Ceramics International, 2025, 51(25): 44137-44150. (SCI, 中科院二區(qū), IF: 5.6) 18. Yang Y, Tong H, Yunhai Liu*, et al. Study on the Erosion Resistance of Different TiN Crystal Planes by Molecular Dynamics[J]. Langmuir, 2024, 40(34): 18324-18337. (SCI, 中科院二區(qū), IF: 3.9) 19. Tang L, Yunhai Liu*, Liu J, et al. The influence of particle size and velocity on the wear failure of TiC coated Fe under oil extraction conditions: A molecular dynamics study[J]. Engineering Failure Analysis, 2024, 164: 108741. (SCI, 中科院二區(qū), IF: 5.7) 20. Zhu X, Luo Y, Yunhai Liu*, et al. Understanding the Effect of Oil-Based Lubricants on the Tribological Behavior of Fe–Cr Alloys from Reactive Molecular Dynamics[J]. Langmuir, 2023, 39(14): 5145-5155. (SCI, 中科院二區(qū), IF: 3.9) |