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| 织构化表面NbSe2涂层的真空载流摩擦学行为 期刊论文 摩擦学学报, 2021, 期号: xxx, 页码: xxx Authors: 杨洋; 吉利; 鞠鹏飞; 刘京周; 裴露露; 李红轩; 周惠娣; 陈建敏; 段文山 Adobe PDF(1045Kb)  |  Favorite  |  View/Download:72/1  |  Submit date:2021/11/19 |
| A strategy to construct long-range fullerene-like nanostructure in amorphous carbon film with improved toughness and carrying capacity 期刊论文 Journal of Physics D: Applied Physics, 2020, 期号: 53, 页码: 335205 Authors: Zhao YM(赵艺蔓); Ju PF(鞠鹏飞); Liu HM(刘红妹); Pei LL(裴露露); Ji L(吉利); Li HX(李红轩); Xue DS(薛德胜); Zhou HD(周惠娣); Chen JM(陈建敏) Adobe PDF(2894Kb)  |  Favorite  |  View/Download:75/0  |  Submit date:2020/12/21 |
| In-situ synthesis of size-tunable silver sulfide nanoparticles to improve tribological properties of the polytetrafluoroethylene-based nanocomposite lubricating coatings 期刊论文 Tribology International, 2020, 期号: 148, 页码: 106324 Authors: Yanjun Ma(马彦军); Hongqi Wan(万宏启); Yinping Ye(冶银平); Lei Chen(陈磊); Hongxuan Li(李红轩); Huidi Zhou(周惠娣); Jianmin Chen(陈建敏) Adobe PDF(5958Kb)  |  Favorite  |  View/Download:179/0  |  Submit date:2020/04/26 Ag2S nanoparticles In-situ synthesis Size control Tribological properties |
| The role of methane in the formation of fullerene-like nanostructure in amorphous carbon film deposited by reactive magnetron sputtering 期刊论文 Diamond & Related Materials, 2020, 期号: 109, 页码: 108018 Authors: Pei LL(裴露露); Ju PF(鞠鹏飞); Ji L(吉利); Li HX(李红轩); Liu XH(刘晓红); Xue DS(薛德胜); Zhou HD(周惠娣); Chen JM(陈建敏) Adobe PDF(2891Kb)  |  Favorite  |  View/Download:61/0  |  Submit date:2020/12/03 Methane Target poisoning Fullerene-like nanostructure Hydrogenated carbon films Reactive magnetron sputtering |
| Designing a PAI/PTFE coating with enhanced high-temperature tribological properties by S8-POSS: Solid-liquid dual lubrication 期刊论文 Designing a PAI/PTFE coating with enhanced high-temperature tribological properties by S8-POSS: Solid-liquid dual lubrication, 2020, 期号: 145, 页码: 105667 Authors: Yu CY(俞传永); Ju PF(鞠鹏飞); Wan HQ(万宏启); Chen L(陈磊); Li HX(李红轩); Zhou HD(周惠娣); Chen JM(陈建敏) Adobe PDF(4899Kb)  |  Favorite  |  View/Download:103/1  |  Submit date:2021/01/27 |
| In-situ synthesis strategy of mono-disperse Ag2S nanoparticles to modify wear resistance of polyamide-imide nanocomposite lubricating coatings 期刊论文 Tribology Letters, 2019, 卷号: 67, 期号: 118, 页码: 1-11 Authors: Yanjun Ma(马彦军); Yinping Ye(冶银平); Hongqi Wan(万宏启); Lei Chen(陈磊); Huidi Zhou(周惠娣); Jianmin Chen(陈建敏) Adobe PDF(2406Kb)  |  Favorite  |  View/Download:156/2  |  Submit date:2019/11/24 In-situ synthesis Ag2S nanoparticles Monodisperse Wear resistance Nanocomposites |
| 电接触材料摩擦学研究进展 期刊论文 摩擦学学报, 2019, 卷号: 39, 期号: 5, 页码: 656-668 Authors: 谢博华; 鞠鹏飞; 吉利; 李红轩; 周惠娣; 陈建敏 Adobe PDF(975Kb)  |  Favorite  |  View/Download:190/0  |  Submit date:2019/11/23 电接触 载流摩擦 磨损失效 电弧侵蚀 金属基材料 石墨烯 |
| Toward low friction in high vacuum by designing textured a-C/IL duplex lubricating film 期刊论文 Vacuum, 2018, 卷号: 148, 页码: 11-17 Authors: Song H(宋惠); Chen J(陈杰); Liu, Zhiyong; Ji L(吉利); Li HX(李红轩); Ling, Guoping; Chen JM(陈建敏); Song, Hui; Chen, Jie Adobe PDF(2279Kb)  |  Favorite  |  View/Download:144/6  |  Submit date:2018/06/20 A-c Film Ionic Liquid Surface Texture Friction Vacuum |
| Fabrication and tribological behaviors of a novel environmental friendly water-based PAI-PTFE-LaF3 bonded solid lubricating composite coating 期刊论文 Tribology International, 2018, 卷号: 121, 期号: 0, 页码: 400-409 Authors: Li B(李斌); Jiang, Xiaofang; Wan HQ(万宏启); Chen L(陈磊); Ye YP(冶银平); Zhou HD(周惠娣); Chen JM(陈建敏); Ye YP(冶银平); Chen JM(陈建敏) Adobe PDF(5521Kb)  |  Favorite  |  View/Download:133/2  |  Submit date:2018/06/01 Environment Friendly Bonded Solid Lubricating Coating Nano-reinforced Effect Tribological Behaviors |
| Improving the tribological performance of a-C:H film in a high vacuum by surface texture 期刊论文 Journal of Physics D: Applied Physics, 2014, 卷号: 47, 期号: 23, 页码: 235301(1-11) Authors: Song H(宋惠); Ji L(吉利); Li HX(李红轩); Liu XH(刘晓红); Zhou HD(周惠娣); Liu L(刘流); Chen JM(陈建敏); Ji L(吉利); Chen JM(陈建敏) Adobe PDF(5212Kb)  |  Favorite  |  View/Download:381/4  |  Submit date:2014/11/24 A-c:h Films Surface Texture High Vacuum Wear Life Friction And Wear Mechanism |