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中国科学院兰州化学物理研究所机构知识库
KMS Lanzhou Institute of Chemical Physics,Chinese Academy of Sciences
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固体润滑国家重点实... [15]
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张利刚 [6]
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Achieving macroscale superlubricity with ultra-short running-in period by using polyethylene glycol-tannic acid complex green lubricant
期刊论文
Friction, 2023, 卷号: 11, 期号: 5, 页码: 748–762
Authors:
Changhe Du
;
Tongtong Yu
;
Zishuai Wu
;
Liqiang Zhang
;
Ruilin Shen
;
Xiaojuan Li
;
Min Feng
;
Yange Feng
;
Daoai Wang
Adobe PDF(3728Kb)
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View/Download:80/0
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Submit date:2023/01/09
superlubricity
running-in period
tannic acid
green lubricant
friction
Controlling the triboelectric properties and tribological behavior of polyimide materials via plasma treatment
期刊论文
Nano Energy, 2022, 卷号: 102, 期号: -, 页码: 107691
Authors:
Xiao Sun
;
Yongjian Liu
;
Ning Luo
;
Ying Liu
;
Yange Feng
;
Shougang Chen
;
Wang DA(王道爱)
Adobe PDF(14407Kb)
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View/Download:76/0
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Submit date:2023/01/09
Triboelectric properties
Tribological behavior
Plasma irradiation
Polyimide
Antistatic PI surface
Dual-electric-polarity augmented cyanoethyl cellulose-based triboelectric nanogenerator with ultra-high triboelectric charge density and enhanced electrical output property at high humidity
期刊论文
Nano Energy, 2022, 卷号: 103, 期号: 无, 页码: 107748
Authors:
Nannan Wang
;
Weihua Zhang
;
Zibiao Li
;
Sheng Wang
;
Ady Suwardi
;
Enyi Ye
;
Bofan Li
;
Yupeng Liu
;
Zishuai Wu
;
Yang Dong
;
Xian Jun Loh
;
Daoai Wang
Adobe PDF(9090Kb)
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Submit date:2023/01/09
Synthesis and evaluation of oil-soluble ionic liquids as multifunctional lubricant additives
期刊论文
TRIBOLOGY INTERNATIONAL, 2020, 卷号: 151, 期号: 2020, 页码: 106446
Authors:
Ma R(马瑞)
;
Zhao Q(赵勤)
;
Zhang EH(张恩惠)
;
Zheng DD(郑东东)
;
Li WM(李维民)
;
Wang XB(王晓波)
Adobe PDF(2542Kb)
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Submit date:2020/11/30
Role of carbon nanotubes on growth of a nanostructured double-deck tribofilm yielding excellent self-lubrication performance
期刊论文
Carbon, 2020, 期号: 161, 页码: 445-455
Authors:
Che, Qinglun
;
Li, Hao
;
Zhang, ligang(张利刚)
;
Zhao, Fuyan(赵福燕)
;
Li, Guitao(李贵涛)
;
Guo, Yufeng
;
Zhang, Jianjun
;
Zhang, Ga(张嘎)
Adobe PDF(3546Kb)
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Submit date:2020/11/26
MWCNTs
ZrO2 nanoparticles
Double-deck tribofil
Self-lubrication
Wear resistance
Solvent-free ionic nanofluids based on graphene oxide-silica hybrid as highperformance lubricating additive
期刊论文
Applied Surface Science, 2019, 期号: 471, 页码: 482-493
Authors:
Guo Yuexia(郭月霞)
;
Guo Lihe(郭丽和)
;
Li Guitao(李贵涛)
;
Zhang Ligang(张利刚)
;
Zhao Fuyan(赵福燕)
;
Wang Chao(王超)
;
Zhang Ga(张嘎)
Adobe PDF(4954Kb)
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Submit date:2019/01/02
Nanofluids
Lubrication Additive
Graphene Oxide
Silica Nanoparticles
Tribofilm
Covalently attached mesoporous silica–ionic liquid hybrid nanomaterial as water lubrication additives for polymer-metal tribopair
期刊论文
Tribology International, 2018, 卷号: 119, 期号: 0, 页码: 721-730
Authors:
Qi HM(齐慧敏)
;
Guo YX(郭月霞)
;
Zhang LG(张利刚)
;
Li GT(李贵涛)
;
Zhang G(张嘎)
;
Wang TM(王廷梅)
;
Wang QH(王齐华)
;
张嘎
Adobe PDF(3863Kb)
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Submit date:2018/05/07
Ionic Liquid
Silica
Tribofilm
Polyimide Composites
Role of hydrolysable nanoparticles on tribological performance of PPS-steel sliding pair lubricated with sea water
期刊论文
Tribology International, 2018, 期号: 127, 页码: 147-156
Authors:
Xu Yongkun(许永坤)
;
Guo Yuexia(郭月霞)
;
Li Guitao(李贵涛)
;
Zhang Ligang(张利刚)
;
Zhao Fuyan(赵福燕)
;
Guo Xueping
;
Dmitriev Andrey I.
;
Zhang Ga(张嘎)
Adobe PDF(4970Kb)
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Submit date:2018/11/16
Nanoparticles
Boundary Lubrication
Tribofilm
Hydrolysis Reaction
High lubricity and electrical responsiveness of solvent-free ionic SiO2 nanofluids
期刊论文
Journal of Materials Chemistry A, 2018, 卷号: 6, 期号: 6, 页码: 2817-2827
Authors:
Guo YX(郭月霞)
;
Zhang LG(张利刚)
;
Zhang G(张嘎)
;
Wang DA(王道爱)
;
Wang TM(王廷梅)
;
Wang QH(王齐华)
;
Zhang G(张嘎)
Adobe PDF(4029Kb)
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Submit date:2018/05/07
Understanding the synergistic lubrication effect of 2-mercaptobenzothiazolate based ionic liquids and Mo nanoparticles as hybrid additives
期刊论文
Tribology International, 2018, 卷号: 125, 期号: 0, 页码: 39-45
Authors:
Li Y(李毅)
;
Zhang SW(张松伟)
;
Ding Q(丁奇)
;
Li H(李华)
;
Qin BF(秦宝锋)
;
Hu LT(胡丽天)
;
Zhang SW(张松伟)
;
Hu LT(胡丽天)
Adobe PDF(4788Kb)
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Submit date:2018/05/01
Ionic Liquids
Nanoparticle Additives
Hybrid Lubricant Additives
Synergistic Effect