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Effects of Y2O3 on Thermal Shock of Al2O3/TiCN Composites

邱关明李喜坤修稚萌孙旭东严长浩代少俊

2005Acta Scientiarum Naturalium Universitatis SunyatseniEngineering被引 1

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摘要

Thermal shock resistance of Al2O3-TiCN(30%)-Y2O3(0.2%) composite was studied by hot pressing(HP) method at different temperatures. The study shows that thermal shock resistance of the material is determined by its microstructure and reinforced mechanism. According to SEM and calculation of thermal shock, the fractured surface of Al2O3-30%TiCN-0.2%Y2O3 composite is undulate. The residual strength of Al2O3-30%TiCN-0.2%Y2O3 is higher than Al2O3-30%TiCN at 200~800 ℃ after thermal shock. Cracks initiation resistance (R')and cracks propagation resistance (R″″)of Al2O3-30%TiCN-0.2%Y2O3 composite increases 12% and 5% respectively compared with that of Al2O3-30%TiCN. It matches with experimental results. The addition of Y2O3 forms YAG that inhibits crystal growth, and increases fracture stress, fracture toughness, cracks initiation resistance and cracks propagation resistance. Therefore, thermal shock resistance increases. The fracture work of Al2O3-30%TiCN and Al2O3-30%TiCN-0.2%Y2O3 composites are 132 and 148 J·m-2 respectively.

引用本文(GB/T 7714)

邱关明, 李喜坤, 修稚萌, 等. Effects of Y2O3 on Thermal Shock of Al2O3/TiCN Composites[J]. Acta Scientiarum Naturalium Universitatis Sunyatseni, 2005.

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