Magnesia tuned multi-walled carbon nanotubes-reinforced alumina nanocomposites

被引:20
作者
Ahmad, Iftikhar [1 ]
Islam, Mohammad [1 ]
Dar, Mushtaq Ahmad [1 ]
Xu, Fang [2 ]
Shah, Syed Ismat [3 ]
Zhu, Yanqiu [4 ]
机构
[1] King Saud Univ, AMI, CEREM, Riyadh 11421, Saudi Arabia
[2] Univ Nottingham, Fac Engn, Div Mat Mech & Struct, Nottingham NG7 2RD, England
[3] Univ Delaware, Dept Mat Sci & Engn, Newark, DE 19716 USA
[4] Univ Exeter, Coll Engn Math & Phys Sci, Exeter EX4 4QF, Devon, England
关键词
Nanocomposite; Carbon nanotube; Alumina; Microstructure; Mechanical properties; Magnesia; CERAMIC-MATRIX COMPOSITES; MECHANICAL-PROPERTIES; DOPED ALUMINA; MICROSTRUCTURE; STRENGTH;
D O I
10.1016/j.matchar.2014.12.002
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Magnesia tuned alumina ceramic nanocomposites, reinforced with multi-walled carbon nanotubes, were condensed using pressureless and hot-press sintering processes. Densification, microstructure and mechanical properties of the produced nanocomposites were meticulously investigated. Electron microscopy studies revealed the homogenous carbon nanotube dispersion within the alumina matrix and confirmed the retention of carbon nanotubes' distinctive tubular morphology and nanoscale features during the extreme mixing/sintering processes. Pressureless sintered nanocomposites showed meagre mechanical responses due to the poorly-integrated microstructures with a slight improvement upon magnesia addition. Conversely, both the magnesia addition and application of hot-press sintering technique resulted in the nanocomposite formation with near-theoretical densities (-99%), well-integrated microstructures and superior mechanical properties. Hot-press sintered nanocomposites incorporating 300 and 600 ppm magnesia exhibited an increase in hardness (10 and 11%), flexural strength (5 and 10%) and fracture toughness (15 and 20%) with respect to similar magnesia-free samples. Compared to monolithic alumina, a decent rise in fracture toughness (37%), flexural strength (22%) and hardness (20%) was observed in the hot-press sintered nanocomposites tuned with merely 600 ppm magnesia. Mechanically superior hot-press sintered magnesia tailored nanocomposites are attractive for several load-bearing structural applications. (C) 2014 Elsevier Inc. All rights reserved.
引用
收藏
页码:210 / 219
页数:10
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