Title of article
Matrix structure evolution and thermo-mechanical properties of carbon fiber-reinforced Al2O3SiCC castable composites
Author/Authors
Li، نويسنده , , Xiangcheng and Li، نويسنده , , Yaxiong and Chen، نويسنده , , Liufang and Zhu، نويسنده , , Boquan، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2015
Pages
6
From page
201
To page
206
Abstract
The spalling and corrosion during the thermal cycles are the main causes of the damages observed in Al2O3SiCC castable composites that are used in molten-iron system. Using the catalyst of nano Ni and ball pitch in the matrix, Al2O3SiCC castable composites were prepared with the anti-oxidant addition of silicon. The results indicate that the high temperature of the Al2O3SiCC castable composites can be increased by above 42%, and the thermal shock resistance can be enhanced by above 20% because the ball pitch is carbonized and releases CxHy vapor, which can be pyrolized to carbon atoms and subsequently deposited into carbon fibers under the catalyst action. The starting temperature of carbon fiber growth is approximately 900 °C, and their diameter and aspect ratio can increase with the rising temperature. The in-situ generation of carbon fibers in Al2O3SiCC castable composites can significantly improve the fibers’ thermo-mechanical properties.
Keywords
mechanical properties , Composites , microstructure , Electron microscopy
Journal title
Materials Research Bulletin
Serial Year
2015
Journal title
Materials Research Bulletin
Record number
2105967
Link To Document