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The effect of interface electrostatic interaction based on acid-base theory on friction behavior 期刊论文
Surface and Interface Analysis, 2017, 卷号: 49, 期号: 8, 页码: 691-697
Authors:  Qiang L(强力);  Cao ZY(曹忠跃);  Shi J(师晶);  Zhou Y(周妍);  Liang AM(梁爱民);  Zhang JY(张俊彦);  Zhang JY(张俊彦);  Liang AM(梁爱民)
Adobe PDF(557Kb)  |  Favorite  |  View/Download:90/4  |  Submit date:2017/11/24
F-dlc Film  Friction Surface  Electrostatic Interaction  Friction  
Monitoring the nanostructure of a hydrogenated fullerene-like film by pulse bias duty cycle 期刊论文
RSC Advances, 2016, 卷号: 6, 期号: 64, 页码: 59039-59044
Authors:  Liu GQ(刘广桥);  Zhou Y(周妍);  Zhang B(张斌);  Gao KX(高凯雄);  Qiang L(强力);  Zhang JY(张俊彦);  Zhang JY(张俊彦)
Adobe PDF(867Kb)  |  Favorite  |  View/Download:227/9  |  Submit date:2016/06/27
Further improving the mechanical and tribological properties of low content Ti-doped DLC film by W incorporating 期刊论文
Applied Surface Science, 2015, 卷号: 353, 期号: 无, 页码: 522-529
Authors:  Qiang L(强力);  Gao KX(高凯雄);  Zhang LF(张礼芳);  Wang, Jian;  Zhang B(张斌);  Zhang JY(张俊彦)
Adobe PDF(2833Kb)  |  Favorite  |  View/Download:282/11  |  Submit date:2015/11/04
W/ti-doped Dlc Film  Internal Stress  Mechanical Properties  Tribological Performance  
The tribological performance of fullerene-like hydrogenated carbon films under ionic liquid lubrication 期刊论文
Surface and Interface Analysis, 2015, 卷号: 47, 期号: 9, 页码: 903-910
Authors:  Wu, Kunyao;  Qiang L(强力);  Gong ZB(龚珍彬);  Zhao, Gengrui;  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(2143Kb)  |  Favorite  |  View/Download:242/9  |  Submit date:2015/10/29
Fullerene-like Hydrogenated Carbon Film  Ionic Liquid  Tribological Performance  Boundary Lubrication  
Improving the internal stress and wear resistance of DLC film by low content Ti doping 期刊论文
Solid State Sciences, 2013, 卷号: 20, 页码: 17-22
Authors:  Qiang L(强力);  Zhang B(张斌);  Zhou Y(周妍);  Zhang JY(张俊彦);  Zhang JY(张俊彦)
Adobe PDF(1136Kb)  |  Favorite  |  View/Download:432/10  |  Submit date:2013/12/03
Diamond-like Carbon Film  Low ConcentraTion Ti Doping  Stress  Wear Resistance