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POSS grafted hybrid-fabric composites with a biomimic middle layer for simultaneously improved UV resistance and tribological properties 期刊论文
Composites Science and Technology, 2018, 期号: 160, 页码: 69-78
Authors:  Yuan JY(袁军亚);  Zhang ZZ(张招柱);  Yang MM(杨明明);  Wang WJ(王文静);  Men XH(门学虎);  Liu WM(刘维民)
Adobe PDF(4070Kb)  |  Favorite  |  View/Download:112/0  |  Submit date:2018/11/21
Textile Composites  Environmental Degradation  Fiber/matrix Bond  Friction/wear  
Graphene Oxide-Grafted Hybrid-Fabric Composites with Simultaneously Improved Mechanical and Tribological Properties 期刊论文
Tribology Letters, 2018, 卷号: 66, 期号: 1, 页码: 28(1-11)
Authors:  Yuan JY(袁军亚);  Zhang ZZ(张招柱);  Yang MM(杨明明);  Li PL(李佩隆);  Men XH(门学虎);  Liu WM(刘维民);  Zhang ZZ(张招柱)
Adobe PDF(3261Kb)  |  Favorite  |  View/Download:131/2  |  Submit date:2018/06/11
Fabrics/textiles  Polymer Matrix Composites (Pmcs)  Fiber/matrix Bond  Wear  
Carbon nanotubes coated hybrid-fabric composites with enhanced mechanical and thermal properties for tribological applications 期刊论文
Composites Part A: Applied Science and Manufacturing, 2017, 卷号: 102, 页码: 243-252
Authors:  Yuan JY(袁军亚);  Zhang ZZ(张招柱);  Yang MM(杨明明);  Guo F(郭芳);  Men XH(门学虎);  Liu WM(刘维民);  Zhang ZZ(张招柱);  Men XH(门学虎)
Adobe PDF(3938Kb)  |  Favorite  |  View/Download:161/0  |  Submit date:2017/12/19
Fabrics/textiles  Fiber/matrix Bond  Thermal Properties  Wear  
WS2-Filled Hybrid PTFE/Nomex Fabric Composites with Improved Anti-wear Property 期刊论文
Journal of materials science, 2015, 卷号: 50, 页码: 1065-1070
Authors:  Ren GN(任桂娜);  Zhang ZZ(张招柱);  Zhu XT(朱小涛);  Yang MM(杨明明);  Men XH(门学虎);  Jiang W(姜葳);  Liu WM(刘维民);  Zhang ZZ(张招柱);  Men XH(门学虎)
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The study of TEMPOs as additives in different lubrication oils for steel/steel contacts 期刊论文
Tribology International, 2014, 卷号: 73, 页码: 83-87
Authors:  Li DM(李冬梅);  Gao P(高平);  Sun XJ(孙晓军);  Zhang SW(张松伟);  Zhou F(周峰);  Liu WM(刘维民);  Zhou F(周峰);  Liu WM(刘维民)
Adobe PDF(866Kb)  |  Favorite  |  View/Download:300/1  |  Submit date:2015/01/15
Tempos  Anti-wear  Anti-oxidant  Anti-atomic Oxygen  
Sliding wear behaviors of Nomex fabric/phenolic composite under dry and water-bathed sliding conditions 期刊论文
Friction, 2014, 卷号: 2, 期号: 3, 页码: 264–271
Authors:  Ren GN(任桂娜);  Zhang ZZ(张招柱);  Zhu XT(朱小涛);  Men XH(门学虎);  Jiang W(姜葳);  Liu WM(刘维民);  Zhang ZZ(张招柱);  Men XH(门学虎)
Adobe PDF(3454Kb)  |  Favorite  |  View/Download:440/6  |  Submit date:2014/11/09
Nomex Fabric/phenolic Composite  Friction And Wear Property  Dry And Water-bathed Sliding Condition  
Dependence of atomic oxygen resistance and the tribological properties on microstructures of WS2 films 期刊论文
Applied Surface Science, 2014, 卷号: 298, 页码: 36-43
Authors:  Xu SS(徐书生);  Gao XM(高晓明);  Hu M(胡明);  Sun JY(孙嘉奕);  Jiang D(姜栋);  Wang DS(王德生);  Zhou F(周峰);  Weng LJ(翁立军);  Liu WM(刘维民);  Weng LJ(翁立军);  Liu WM(刘维民)
Adobe PDF(3156Kb)  |  Favorite  |  View/Download:471/9  |  Submit date:2014/12/01
Atomic Oxygen Resistance  Ws2  Al Doping  Microstructure  Tribological Properties  
Comparative study of moisture corrosion to WS2 and WS2/Cu multilayer films 期刊论文
Surface and Coatings Technology, 2014, 卷号: 247, 页码: 30-38
Authors:  Xu SS(徐书生);  Gao XM(高晓明);  Sun JY(孙嘉奕);  Hu M(胡明);  Wang DS(王德生);  Jiang D(姜栋);  Zhou F(周峰);  Weng LJ(翁立军);  Liu WM(刘维民);  Weng LJ(翁立军);  Liu WM(刘维民)
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Ws2 Based Films  Microstructure  Anti-humidity  Tribological Properties  
High-temperature tribological performance of hybrid PTFE/Nomex fabric/phenolic composite 期刊论文
Composites Science and Technology, 2014, 卷号: 104, 页码: 146-151
Authors:  Ren GN(任桂娜);  Zhang ZZ(张招柱);  Zhu XT(朱小涛);  Yang MM(杨明明);  Men XH(门学虎);  Jiang W(姜葳);  Liu WM(刘维民);  Zhang ZZ(张招柱);  Men XH(门学虎)
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Textile Composites  Friction/wear  High-temperature Properties  Plasma Spraying  Anti-oxidant Filling  
Stable biomimetic super-hydrophobic copper surface fabricated by a simple wet-chemical method 期刊论文
Journal of Dispersion Science and Technology, 2010, 卷号: 31, 页码: 488-491
Authors:  Xu XH(徐向辉);  Zhang ZZ(张招柱);  Liu WM(刘维民)
Adobe PDF(712Kb)  |  Favorite  |  View/Download:147/1  |  Submit date:2012/09/28
Self-assemble  Superhydrophobic  Surface Roughness  Wet-chemical Etching