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| Tribological behavior and lubrication mechanism of self-lubricating ceramic/metal composites: The effect of matrix type on the friction and wear properties 期刊论文 Wear, 2017, 卷号: 372-373, 页码: 130-138 Authors: Su YF(苏云峰); Zhang YS(张永胜); Song JJ(宋俊杰); Hu LT(胡丽天); Zhang YS(张永胜) Adobe PDF(5433Kb)  |  Favorite  |  View/Download:233/1  |  Submit date:2017/04/07 Ceramic-matrix Composite Metal-matrix Composite Graphite Sliding Wear Hardness |
| Surface Engineering Design of Alumina/Molybdenum Fibrous Monolithic Ceramic to Achieve Continuous Lubrication from Room Temperature to 800 °C 期刊论文 Tribology Letters, 2017, 卷号: 65, 页码: 47(1-9) Authors: Su YF(苏云峰); Hu LT(胡丽天); 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(2871Kb)  |  Favorite  |  View/Download:171/3  |  Submit date:2017/07/10 Ceramic Composite Friction-reducing Surface Modification Wear Mechanisms |
| 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:213/3  |  Submit date:2016/04/12 Space Ceramic Composite Molybdenum Self-lubrication Wear Mechanisms |
| Design of structure parameters and corrugated interfaces for optimal mechanical properties in alumina/graphite laminated nanocomposites 期刊论文 Materials and Design, 2015, 卷号: 65, 页码: 1205-1213 Authors: Song JJ(宋俊杰); Zhang YS(张永胜); Fan HZ(樊恒中); Fang Y(方媛); Hu LT(胡丽天); Zhang YS(张永胜); Hu LT(胡丽天) Adobe PDF(3743Kb)  |  Favorite  |  View/Download:171/4  |  Submit date:2015/12/15 Ceramic-matrix Composites Layered Structures Interface Mechanical Properties Fracture |
| High-temperature self-lubricated properties of Al2O3/Mo laminated composites 期刊论文 Wear, 2012, 卷号: 280, 页码: 1-4 Authors: Qi YE(齐亚娥); Zhang YS(张永胜); Hu LT(胡丽天); Zhang YS(张永胜); Hu LT(胡丽天) Adobe PDF(710Kb)  |  Favorite  |  View/Download:280/4  |  Submit date:2013/07/12 Layered Composite Fracture Toughness Sliding Wear High Temperature |