LICP OpenIR

Browse/Search Results:  1-10 of 57 Help

Filters                    
Selected(0)Clear Items/Page:    Sort:
Graphitic Encapsulation and Electronic Shielding of Metal Nanoparticles to Achieve Metal–Carbon Interfacial Superlubricity 期刊论文
ACS applied materials & interfaces, 2021, 卷号: 13, 期号: 2, 页码: 3397–3407
Authors:  Ruiyun Li;  Xing Yang;  YongfuWang(王永富);  Junyan Zhang(张俊彦);  Jiangong Li
Adobe PDF(11534Kb)  |  Favorite  |  View/Download:98/1  |  Submit date:2021/01/22
Friction and wear behaviors of different DLC films sliding against SiC and Si3N4 balls under high relative humidity 期刊论文
Diamond & Related Materials, 2020, 期号: 108, 页码: 107977
Authors:  Ping Xu;  Xueqian Cao;  Minglan Zhang;  Wen Yue;  Guangan Zhang
Adobe PDF(9161Kb)  |  Favorite  |  View/Download:68/0  |  Submit date:2020/11/30
Tribological behaviors  High relative humidity  Silicon-based oxygen-free ceramic material  DLC films  Graphitization degree  
Study on low velocity cyclic impact wear of amorphous carbon films with different mechanical properties 期刊论文
Surface & Coatings Technology, 2020, 期号: 402, 页码: 126339
Authors:  Qinglin Li;  Shaomiao Shi;  Xia Li;  Shiyan Ding;  Chenglong Fan;  Guangan Zhang
Adobe PDF(3916Kb)  |  Favorite  |  View/Download:63/0  |  Submit date:2020/11/30
Amorphous carbon film  Low velocity cyclic impact wear  Dynamic response  Fracture mechanisms  Impact wear resistance  
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)
Adobe PDF(1767Kb)  |  Favorite  |  View/Download:168/3  |  Submit date:2019/11/22
Hydrogenated amorphous carbon film  Graphitization  Fullerene-like  Wear  Humidity  
Temperature‐driven wear behavior of Si3N4‐based ceramic reinforced by in situ formed TiC0.3N0.7 particles 期刊论文
Journal of the American Ceramic Society, 2019, 卷号: 7, 期号: 102, 页码: 4333
Authors:  Liu Jiongjie;  Yang Jun;  Zhu Shengyu;  Cheng Jun;  Yu Yuan;  Qiao Zhuhui;  Liu Weimin
Adobe PDF(3295Kb)  |  Favorite  |  View/Download:91/2  |  Submit date:2019/11/29
Exploring the low friction of diamond-like carbon films in carbon dioxide atmosphere by experiments and first-principles calculations 期刊论文
Applied Surface Science, 2018, 卷号: 436, 页码: 893-899
Authors:  Huo, Lei;  Wang, Shunhua;  Pu JB(蒲吉斌);  Sun JH(孙军辉);  Lu ZB(鲁志斌);  Ju, Pengfei;  Wang LP(王立平);  Pu JB(蒲吉斌)
Adobe PDF(1979Kb)  |  Favorite  |  View/Download:80/4  |  Submit date:2018/06/11
Dlc  Co2  Friction  First-principles  
Observation of structure transition as a function of temperature in depositing hydrogenated sp(2)-rich carbon films 期刊论文
Applied Surface Science, 2018, 卷号: 439, 期号: 0, 页码: 1152-1157
Authors:  Wang YF(王永富);  Gao KX(高凯雄);  Zhang JY(张俊彦);  Zhang JY(张俊彦)
Adobe PDF(2088Kb)  |  Favorite  |  View/Download:135/7  |  Submit date:2018/06/01
Hydrogenated Amorphous Carbon Film  Graphite-like  Fullerene-like  Aromatic Clustering  
The correlation between nano-hardness and elasticity and fullerene-like clusters in hydrogenated amorphous carbon films 期刊论文
Chemical Physics Letters, 2018, 卷号: 692, 期号: 0, 页码: 258-263
Authors:  Wang YF(王永富);  Gao KX(高凯雄);  Wang, Qi;  Zhang JY(张俊彦);  Zhang JY(张俊彦)
Adobe PDF(2031Kb)  |  Favorite  |  View/Download:189/5  |  Submit date:2018/06/11
Fullerene-like  Hardness  Amorphous Carbon  Chemical Vapor Deposition  h Bonded Sites  
Structure effects of sp2-rich carbon films under super-low friction contact. 期刊论文
carbon, 2018, 期号: 137, 页码: 49-56
Authors:  Wang YF(王永富);  Gao KX(高凯雄);  Zhang B(张斌);  Zhang JY(张俊彦);  Wang Q(王琦)
Adobe PDF(2980Kb)  |  Favorite  |  View/Download:138/8  |  Submit date:2018/11/22
Super-Elasticity and Ultralow Friction of Hydrogenated Fullerene-Like Carbon Films: Associated with the Size of Graphene Sheets 期刊论文
Advanced Materials Interfaces, 2018, 卷号: 5, 期号: 6, 页码: 1701303(1-9)
Authors:  Cao ZY(曹忠跃);  Zhao, Wenwen;  Liu, Qiao;  Liang AM(梁爱民);  Zhang JY(张俊彦);  Zhang JY(张俊彦)
Adobe PDF(4674Kb)  |  Favorite  |  View/Download:150/4  |  Submit date:2018/06/05
Fullerene-like Carbon Films  Graphene Sheets  Superelastic Recovery  Ultralow Friction