LICP OpenIR

Browse/Search Results:  1-10 of 13 Help

Filters        
Selected(0)Clear Items/Page:    Sort:
Pencil sketch graphene films as solid lubricant on steel surface: Observation of transition to grapehene/amorphous carbon 期刊论文
Solid State Sciences, 2018, 卷号: 75, 期号: 0, 页码: 71-76
Authors:  Zhang B(张斌);  Xue Y(薛勇);  Gao KX(高凯雄);  Qiang L(强力);  Yu YL(于元烈);  Gong ZB(龚珍彬);  Liang AM(梁爱民);  Zhang JY(张俊彦);  Yang BP(杨保平);  Zhang B(张斌)
Adobe PDF(2202Kb)  |  Favorite  |  View/Download:210/1  |  Submit date:2018/01/02
Graphene  Amorphous Carbon  Lubricant  Low Friction  Low Wear  
A Favorable Chromium Coating Electrodeposited from Cr(III) Electrolyte Reveals Anti-wear Performance Similar to Conventional Hard Chromium 期刊论文
Materials Letters, 2017, 卷号: 189, 页码: 221-224
Authors:  Liang AM(梁爱民);  Li YW(李玉文);  Liang HY(梁红玉);  Ni LW(倪立伟);  Zhang JY(张俊彦);  Liang AM(梁爱民);  Zhang JY(张俊彦)
Adobe PDF(1001Kb)  |  Favorite  |  View/Download:155/3  |  Submit date:2016/12/14
Chromium Coating  Wear Resistance  Electrodeposition  Hard Chromium  Wear And Tribology  
Ultra-low friction and excellent elastic recovery of fullerene-like hydrogenated carbon film based on multilayer design 期刊论文
Bulletin of Materials Science, 2017, 卷号: 40, 期号: 5, 页码: 1029-1034
Authors:  Meng, Yanshuang;  Jia, Xiaolong;  Zhu, Fuliang;  Zhang JY(张俊彦)
Adobe PDF(2577Kb)  |  Favorite  |  View/Download:99/4  |  Submit date:2017/11/24
Carbon Films  Fullerene-like Structure  Elastic Recovery  Super-lower Wear Rate  
Engineering-scale superlubricity of the fingerprintlike carbon films based on high power pulsed plasma enhanced chemical vapor deposition 期刊论文
RSC Advances, 2016, 卷号: 6, 期号: 116, 页码: 115092-115100
Authors:  Gong ZB(龚珍彬);  Shi J(师晶);  Ma W(马巍);  Zhang B(张斌);  Zhang JY(张俊彦);  Zhang JY(张俊彦)
Adobe PDF(1563Kb)  |  Favorite  |  View/Download:291/13  |  Submit date:2016/12/14
A Low-Stress, Elastic, and Improved Hardness Hydrogenated Amorphous Carbon Film 期刊论文
Journal of Nanomaterials, 2015, 页码: 543631(1-5)
Authors:  Wang, Qi;  He, Deyan;  Zhang JY(张俊彦)
Adobe PDF(2823Kb)  |  Favorite  |  View/Download:145/8  |  Submit date:2015/10/29
Recent advances in the mechanical and tribological properties of fluorine-containing DLC films 期刊论文
RSC Advances, 2015, 卷号: 5, 页码: 9635-9649
Authors:  Zhang LF(张礼芳);  Wang FG(王富国);  Qiang L(强力);  Gao KX(高凯雄);  Zhang B(张斌);  Zhang JY(张俊彦);  Zhang JY(张俊彦);  Zhang B(张斌)
Adobe PDF(1109Kb)  |  Favorite  |  View/Download:177/7  |  Submit date:2016/02/24
Grain-boundary strengthening in nanocrystalline chromium and the Hall-Petch coefficient of body-centered cubic metals 期刊论文
Scripta Materialia, 2013, 卷号: 68, 期号: 2, 页码: 118-121
Authors:  Wu, D.;  Zhang JY(张俊彦);  Huang, J. C.;  Bei, H.;  Nieh, T. G.
Adobe PDF(428Kb)  |  Favorite  |  View/Download:152/5  |  Submit date:2015/09/21
Grain Boundaries  Nanocrystalline Metal  Nanoindentation  Hall-petch Effect  
Structure characterization and tribological properties of thick chromium coating electrodeposited from a Cr(III) electrolyte 期刊论文
Surface & Coatings Technology, 2013, 卷号: 218, 页码: 23-29
Authors:  Liang AM(梁爱民);  Ni LW(倪利炜);  Liu Q(刘乔);  Zhang JY(张俊彦);  Zhang JY(张俊彦)
Adobe PDF(1201Kb)  |  Favorite  |  View/Download:341/7  |  Submit date:2013/12/25
Trivalent Chromium Electrodeposition  Chromium Coating  Nanocrystal Graphite  Wear Resistance  
Mechanical and tribological properties of Ti-DLC films with different Ti content by magnetron sputtering technique 期刊论文
Applied Surface Science, 2012, 卷号: 258, 期号: 12, 页码: 5025-5030
Authors:  Cui JF;  Qiang L;  Zhang B;  Ling X;  Yang T;  Zhang JY(张俊彦)
Adobe PDF(948Kb)  |  Favorite  |  View/Download:380/7  |  Submit date:2013/07/12
Diamond-like Carbon Film  Different ConcentraTion Ti Doping  Low ConcentraTion Ti Doping  Mechanical Properties  Tribological Performance  
Correlation between the structure and wear behavior of chromium coatings electrodeposited from trivalent chromium baths 期刊论文
Tribology Letters, 2008, 卷号: 30, 页码: 107-111
Authors:  Ceng ZX(曾志翔);  Zhang JY(张俊彦)
Adobe PDF(376Kb)  |  Favorite  |  View/Download:189/4  |  Submit date:2013/03/28
Chromium  Fatigue Failure  Delamination  Wear Mechanisms