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Surface Engineering Design of Alumina-Matrix Composites 专著章节文集论文
出自: Self-Lubricating Composites:Springer, 2018
Authors:  Zhang YS(张永胜);  Fan HZ(樊恒中);  Hu LT(胡丽天);  Fang Y(方媛);  Song JJ(宋俊杰)
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High-Temperature Self-Lubricated and Fracture Properties of Alumina/Molybdenum Fibrous Monolithic Ceramic 期刊论文
Tribology Letters, 2016, 卷号: 61, 期号: 1, 页码: 9(1-9)
Authors:  Su YF(苏云峰);  Zhang YS(张永胜);  Song JJ(宋俊杰);  Fang Y(方媛);  Hu LT(胡丽天);  Zhang YS(张永胜);  Hu LT(胡丽天)
Adobe PDF(2913Kb)  |  Favorite  |  View/Download:207/3  |  Submit date:2016/04/12
Space  Ceramic Composite  Molybdenum  Self-lubrication  Wear Mechanisms  
Surface engineering design of Al2O3/Mo self-lubricating structural ceramics - Part II: Continuous lubrication effects of a three-dimensional lubricating layer at temperatures from 25 to 800 degrees C 期刊论文
Wear, 2016, 卷号: 360-361, 页码: 97-103
Authors:  Fang Y(方媛);  Fan HZ(樊恒中);  Song JJ(宋俊杰);  Zhang YS(张永胜);  Hu LT(胡丽天);  Zhang YS(张永胜)
Adobe PDF(2843Kb)  |  Favorite  |  View/Download:188/2  |  Submit date:2016/08/24
Ceramic-matrix Composite  Laser Processing  High Temperature  Sliding Wear  Tribochemistry  Solid Lubricants  
Surface composition-lubrication design of Al2O3/Mo laminated composites—Part I: Influence of laser surface texturing on the tribological behavior at 25 and 800 °C 期刊论文
Wear, 2015, 卷号: 334, 页码: 23-34
Authors:  Fang Y(方媛);  Zhang YS(张永胜);  Fan HZ(樊恒中);  Hu TC(胡天昌);  Song JJ(宋俊杰);  Hu LT(胡丽天);  张永胜
Adobe PDF(7207Kb)  |  Favorite  |  View/Download:165/1  |  Submit date:2015/10/29
Ceramic-matrix Composite  Laser Processing  High Temperature  Sliding Wear  Tribochemistry  Solid Lubricants  
Tribological properties of micro-textured surfaces of ZTA ceramic nanocomposites under the combined effect of test conditions and environments 期刊论文
Tribology International, 2014, 卷号: 78, 页码: 134-141
Authors:  Fan HZ(樊恒中);  Hu TC(胡天昌);  Zhang YS(张永胜);  Fang Y(方媛);  Song JJ(宋俊杰);  Hu LT(胡丽天);  Zhang YS(张永胜)
Adobe PDF(8620Kb)  |  Favorite  |  View/Download:152/3  |  Submit date:2015/12/16
Ceramic Composite  Texture Surface  Sliding Friction  Coupling Environments