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MoS2 nanoparticles grown on carbon nanomaterials for lubricating oil additives 期刊论文
Friction, 2020, 卷号: 0, 期号: 0, 页码: 0
Authors:  Gong KL(宫奎亮);  Lou WJ(娄文静);  Zhao GQ(赵改青);  Wu XH(吴新虎);  Wang XB(王晓波)
Favorite  |  View/Download:74/0  |  Submit date:2020/12/29
MoS2 nanoparticle  carbon nanomaterial  antifriction and antiwear additive  
Investigation on tribological behaviors of MoS2 and WS2 quantum dots as lubricant additives in ionic liquids under severe conditions 期刊论文
Friction, 2019, 卷号: 0, 期号: 0, 页码: 1-10
Authors:  Gong KL(宫奎亮);  Lou WJ(娄文静);  Zhao GQ(赵改青);  Wu XH(吴新虎);  Wang XB(王晓波)
Adobe PDF(2632Kb)  |  Favorite  |  View/Download:138/3  |  Submit date:2019/11/30
MoS2 and WS2 quantum dots  Ionic liquids  Lubricant additive  Friction reduction and anti-wear  Severe conditions  
新型高温润滑剂的设计、制备与使役行为研究 学位论文
工学博士, 北京: 中国科学院大学, 2018
Authors:  吴新虎
Adobe PDF(12035Kb)  |  Favorite  |  View/Download:185/2  |  Submit date:2019/10/31
高温润滑剂  减摩抗磨添加剂  离子液体  纳米添加剂  表面修饰  High-temperature lubricant  Anti-friction and anti-wear additives  Ionic liquids  Nano-additives  Surface modification  
In situ formed ionic liquids in lard oil as high‐performance lubricants for steel/steel contacts at elevated temperature 期刊论文
Lubrication Science, 2018, 卷号: 30, 期号: 2, 页码: 65-72
Authors:  Wu XH(吴新虎);  Zhao GQ(赵改青);  Wang XB(王晓波);  Liu WM(刘维民);  Liu WS(刘伟生);  王晓波;  刘维民
Adobe PDF(615Kb)  |  Favorite  |  View/Download:180/6  |  Submit date:2018/03/08
Antiwear  Friction-reducing  High-temperature Lubricants  In Situ Formed Ionic Liquids (Ils)  Lord Oil  
Surface Modification of MoS2 Nanosheets as Effective Lubricant Additives for Reducing Friction and Wear in Poly-α-olefin 期刊论文
Industrial & Engineering Chemistry Research, 2018, 卷号: 57, 页码: 8105−8114
Authors:  Wu XH(吴新虎);  Gong KL(宫奎亮);  Zhao GQ(赵改青);  Lou WJ(娄文静);  Wang XB(王晓波);  Liu WM(刘维民);  Lou WJ(娄文静);  Wang XB(王晓波)
Adobe PDF(891Kb)  |  Favorite  |  View/Download:266/9  |  Submit date:2018/07/04
Mos2  Surface Modification  Lubricating Oil Additive  
MoS2/WS2 Quantum Dots as High-Performance Lubricant Additive in Polyalkylene Glycol for Steel/Steel Contact at Elevated Temperature 期刊论文
Advanced Materials Interfaces, 2018, 卷号: 5, 期号: 1, 页码: 1700859(1-10)
Authors:  Wu XH(吴新虎);  Gong KL(宫奎亮);  Zhao GQ(赵改青);  Lou WJ(娄文静);  Wang XB(王晓波);  Liu WM(刘维民);  Lou WJ(娄文静)
Adobe PDF(6726Kb)  |  Favorite  |  View/Download:329/8  |  Submit date:2018/01/11
Friction Reduction And Antiwear  High-temperature Lubricant  Lubricant Additive  Mos2  Ws2 Quantum Dots  
Mechanical synthesis of chemically bonded phosphorus–graphene hybrid as high-temperature lubricating oil additive 期刊论文
RSC Advances, 2018, 卷号: 8, 期号: 9, 页码: 4595-4603
Authors:  Wu XH(吴新虎);  Gong KL(宫奎亮);  Zhao GQ(赵改青);  Lou WJ(娄文静);  Wang XB(王晓波);  Liu WM(刘维民);  娄文静;  赵改青
Adobe PDF(1406Kb)  |  Favorite  |  View/Download:198/4  |  Submit date:2018/01/26
Investigating the tribological behavior of PEGylated MoS2 nanocomposites as additives in polyalkylene glycol at elevated temperature 期刊论文
RSC Advances, 2017, 卷号: 7, 期号: 84, 页码: 53346-53354
Authors:  Xu Z(徐状);  Lou WJ(娄文静);  Wu XH(吴新虎);  Wang XB(王晓波);  Hao JY(郝俊英);  Wang XB(王晓波);  Hao JY(郝俊英)
Adobe PDF(1647Kb)  |  Favorite  |  View/Download:266/15  |  Submit date:2017/12/05
Preparation of High-Temperature Lubricants by Blending Castor Oil with Lithium Bis(trifluoromethylsulfonyl)imide 期刊论文
Tribology Letters, 2017, 卷号: 65, 期号: 2, 页码: 51(1-10)
Authors:  Wu XH(吴新虎);  Zhao GQ(赵改青);  Wang XB(王晓波);  Liu WM(刘维民);  Wang XB(王晓波);  Liu WM(刘维民)
Adobe PDF(1895Kb)  |  Favorite  |  View/Download:201/6  |  Submit date:2017/06/05
In Situ Formed Ionic Liquids (Ils)  Castor Oil  High-temperature Lubricants  Friction Reduction And Antiwear  
Nanosized MoS2 deposited on graphene as lubricant additive in polyalkylene glycol for steel/steel contact at elevated temperature 期刊论文
Tribology International, 2017, 卷号: 110, 页码: 1-7
Authors:  Gong KL(宫奎亮);  Wu XH(吴新虎);  Zhao GQ(赵改青);  Wang XB(王晓波);  Wang XB(王晓波)
Adobe PDF(1150Kb)  |  Favorite  |  View/Download:265/3  |  Submit date:2017/05/22
Mos2/graphene Nanocomposite  Nanofluid  Friction And Wear  Boundary Lubrication