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Origin of higher graphitization under higher humidity on the frictional surface of self-mated hydrogenated carbon films 期刊论文
Applied Surface Science, 2019, 卷号: 494, 期号: 无, 页码: 452-457
Authors:  Li RY(李瑞云);  Wang YF(王永富);  Zhang JY(张俊彦);  Zhang JY(张激扬)
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Hydrogenated amorphous carbon film  Graphitization  Fullerene-like  Wear  Humidity  
How does substrate roughness affect the service life of a superhydrophobic coating? 期刊论文
Applied Surface Science, 2018, 卷号: 441, 页码: 491-499
Authors:  Zhang, Xin;  Mo, Jiliang;  Si YF(司一帆);  Guo ZG(郭志光)
Adobe PDF(4895Kb)  |  Favorite  |  View/Download:75/1  |  Submit date:2018/06/01
Superhydrophobic Coating  Service Life  Substrate Roughness  Wear-resistance  Superhydrophobicity  
Metal-organic framework superhydrophobic coating on Kevlar fabric with efficient drag reduction and wear resistance 期刊论文
Applied Surface Science, 2018, 卷号: 443, 期号: 0, 页码: 548-557
Authors:  Li DK(李得科);  Guo ZG(郭志光);  Guo ZG(郭志光)
Adobe PDF(3479Kb)  |  Favorite  |  View/Download:45/1  |  Submit date:2018/06/05
Zif-8  Kevlar  Superhydrophobic  Wear Resistance  Drag Reduction  
In-situ friction and wear responses of WS2 films to space environment: Vacuum and atomic oxygen 期刊论文
Applied Surface Science, 2018, 卷号: 447, 期号: 0, 页码: 368-373
Authors:  Xu SS(徐书生);  Sun JY(孙嘉奕);  Weng LJ(翁立军);  Yong Hua;  Liu WM(刘维民);  Anne Neville;  Hu M(胡明);  Gao XM(高晓明);  Gao XM(高晓明);  Hu M(胡明)
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In-situ  Atomic Oxygen  Ws2 Films  Friction  Wear  
Microstructure, mechanical and tribological characterization of CrN/ DLC/Cr-DLC multilayer coating with improved adhesive wear resistance 期刊论文
Applied Surface Science, Applied Surface Science, 2018, 2018, 期号: 439, 页码: 24-32, 24-32
Authors:  Sui XD(隋旭东);  Liu JY(刘金玉);  Zhang ST(张帅拓);  Yang J(杨军);  Hao JY(郝俊英);  Sui XD(隋旭东);  Hao JY(郝俊英)
Adobe PDF(3650Kb)  |  Favorite  |  View/Download:251/10  |  Submit date:2018/01/25
Multilayer Coatings  Crn  Dlc  Friction And Wear  Adhesive Wear  Multilayer Coatings  Crn  Dlc  Friction And Wear  Adhesive Wear  
A comparative study of tribological characteristics of hydrogenated DLC film sliding against ceramic mating materials for helium applications 期刊论文
Applied Surface Science, 2018, 卷号: 441, 期号: 0, 页码: 884-894
Authors:  Wu DH(伍大恒);  Ren, Siming;  Pu JB(蒲吉斌);  Lu ZB(鲁志斌);  Zhang GA(张广安);  Wang LP(王立平);  Pu JB(蒲吉斌);  Zhang GA(张广安)
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Diamond-like Carbon  Mating Material  Friction  Wear  Helium Applications  
Improving interfacial, mechanical and tribological properties of alumina coatings on Al alloy by plasma arc heat-treatment of substrate 期刊论文
Applied Surface Science, 2017, 卷号: 411, 页码: 53-66
Authors:  Hou GL(侯国梁);  An YL(安宇龙);  Zhao XQ(赵晓琴);  Zhou HD(周惠娣);  Chen JM(陈建敏);  Li SJ(李双建);  Liu X(刘侠);  Deng W(邓雯);  An YL(安宇龙);  Chen JM(陈建敏)
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Al Alloy  Ceramic Coating  Epitaxial Growth  Interfacial Properties  Mechanical Properties  Wear Resistance  
Hydrogenated amorphous carbon films on steel balls and Si substrates: Nanostructural evolutions and their trigging tribological behaviors 期刊论文
Applied Surface Science, 2017, 卷号: 420, 页码: 586-593
Authors:  Wang YF(王永富);  Wang, Yan;  Zhang XK(张兴凯);  Shi J(师晶);  Gao KX(高凯雄);  Zhang B(张斌);  Zhang JY(张俊彦);  Zhang B(张斌);  Zhang JY(张俊彦)
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Hydrogenated Amorphous Carbon Film  Graphite-like  Fullerene-like  Super-low Friction  Wear  
Silicon and aluminum doping effects on the microstructure and properties of polymeric amorphous carbon films 期刊论文
Applied Surface Science, 2016, 卷号: 379, 页码: 358-366
Authors:  Liu XQ(刘小强);  Hao JY(郝俊英);  Xie, Yuntao;  Liu XQ(刘小强);  Hao JY(郝俊英)
Adobe PDF(2466Kb)  |  Favorite  |  View/Download:93/2  |  Submit date:2016/07/13
Polymeric Amorphous Carbon  Nanostructure  Mechanical Properties  Super-low Friction  Wear Resistance  
Effects of heat treatment on microstructure and mechanical properties of Ni60/h-BN self-lubricating anti-wear composite coatings on 304 stainless steel by laser cladding 期刊论文
Applied Surface Science, 2015, 卷号: 355, 页码: 350-358
Authors:  Lu, Xiao-Long;  Liu, Xiu-Bo;  Yu, Peng-Cheng;  Zhai, Yong-Jie;  Qiao, Shi-Jie;  Wang, Ming-Di;  Wang, Yong-Guang;  Chen, Yao
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Laser Cladding  Heat Treatment  Self-lubrication  Microstructure  Nano-indentation  Wear