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Analysis of two grain size α-Al2O3 sintering at low heating rate based on master sintering curves

机译:基于主烧结曲线的两种晶粒度低速烧结α-Al2O3烧结

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摘要

Master sintering curves (MSC) were constructed for dry pressed compacts composed of either a submicrocrystalline or a microcrystalline α-Al2O3 powder using constant heating rate dilatometry data containing lower heating rates only. The MSC constructed for two grain size α-Al2O3 were used to evaluate the sintered densities, which agreed well with the density obtained with different heating procedures and determined by Archimedes method. So the applicability of the MSC theory to alumina ceramic sintering under lower heating rates was validated. Apparent activation energies for submicrocrystalline and microcrystalline α-Al2O3 were determined to be 1035 and 1148 kJ mol−1 based on the MSC respectively. The calculated activation energies for densification are higher than the values reported in the literature concerning heating rates >5 K min−1.
机译:使用仅包含较低加热速率的恒定加热速率膨胀法数据,构建由亚微晶或微晶α-Al2O3粉末组成的干压制压块的主烧结曲线(MSC)。用两种粒径的α-Al2O3构成的MSC评估烧结密度,该密度与不同加热程序获得的密度和通过阿基米德法测定的密度很好地吻合。因此,验证了MSC理论在较低加热速率下对氧化铝陶瓷烧结的适用性。根据MSC,亚微晶和微晶α-Al2O3的表观活化能分别为1035和1148 kJ mol-1。计算出的致密化活化能高于文献中报道的关于加热速率> 5 K min-1的值。

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