Mechanism of Silicon/Carbon Reaction for β-SiC Bonded SiC Materials

Author:

Lv Chun Jiang1,Yang Yang1,Liu Zhen1,Li Long Fei1,Chang Cheng1,Gong Jian Feng1

Affiliation:

1. Sinosteel Luoyang Institute of Refractories Research Co., Ltd

Abstract

Based on industrial silicon and carbon black as starting materials,β-SiC bonded SiC materials were prepared. The microstructure of such material and the silicon/carbon reaction were analyzed and investigated by XRD, SEM and other tools. The results indicate that the synthesis of β-SiC at 1400°C can be achieved through gas-phase mass transfer, liquid dissolution as well as in-situ reaction. While gas-phase mass transfer is the dominant reaction during the sintering of the material, in which β-SiC exists mainly as nanowhisker. The formation of β-SiC nanowires is believed to be the mechanism of reaction sintering.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference5 articles.

1. Masatsugu KITAMURA, Kiyotaka ENOKI, Hideyuki MORIYASL, Yoichi NASU: Shinagawa Technical Report. VOL. 51 (2008),P. 37.

2. Yukitoshi KUBOTA, Eishi IIDA, Kenichi MATSUBARA: Shinagawa Technical Report. VOL. 47(2004),P. 65.

3. He Huang, John T. Fox, Fred S. Cannon, Sridhar Komarneni: Ceramics International. VOL. 37(2011),P. 1063.

4. Majid S. Al-Ruquishi, Roslan Md Nor, Yusoff Mohd Amin, Khalifa Al-Azri:. Journal of Alloys and Compounds. VOL. 497(2010),P. 272.

5. M. Wieligor,R. Rich T.W. Zerda: J Mater Sci. VOL. 45(2010),P. 1725.

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