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Sintering Mechanism of Fine Zirconia Powders with Alumina Added by Various Ways

机译:多种方式添加氧化铝的氧化锆细粉的烧结机理

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摘要

Small amounts of Al_2O_3 were added to fine zirconia powder by different ways: powder mixing, hydrolysis of alkoxide, and homogeneous precipitation. During a constant rate heating process, the Al_2O_3 addition slightly raised the starting temperature of densification of powder compact, and the densification was remarkably stimulated by Al_2O_3 at temperatures above about 1100℃. According to an isothermal analysis of densification, the densification rate was retarded by Al_2O_3 addition just after the start of sintering and then the densification rate increased significantly during sintering compared to Al_2O_3-free powder. These results mean that Al_2O_3 particles pinned the shrinkage of zirconia powder compact at the initial stage, and diffuse toward zirconia surface to enhance the sintering. The sintering mechanism was explained by the grain-boundary diffusion for the Al_2O_3-free powder and the volume diffusion for Al_2O_3-added powder. When the Al_2O_3 was added to zirconia powder by homogeneous precipitation and alkoxide methods, the densification rate was more stimulated compared to powder mixing method. The sintering mechanism did not change by the way for Al_2O_3 addition. The Al_2O_3 addition by the chemical process tended to enhance the grain growth of zirconia, while the uniform microstructure was achieved because of homogeneous addition of Al_2O_3 by these chemical processes.
机译:通过不同的方式将少量的Al_2O_3添加到氧化锆细粉中:粉末混合,醇盐水解和均匀沉淀。在恒速加热过程中,Al_2O_3的添加略微提高了粉体致密化的起始温度,在约1100℃以上的温度下,Al_2O_3明显促进了致密化。根据致密化的等温分析,刚开始烧结后,通过添加Al_2O_3会延迟致密化速率,然后与不含Al_2O_3的粉末相比,致密化速率在烧结过程中会明显增加。这些结果表明,Al_2O_3颗粒在初始阶段阻止了氧化锆粉体的收缩,并向氧化锆表面扩散以增强烧结。烧结机理通过不含Al_2O_3的粉末的晶界扩散和添加Al_2O_3的粉末的体积扩散来解释。当通过均匀沉淀和醇盐方法将Al_2O_3添加到氧化锆粉末中时,与粉末混合方法相比,致密化速率受到的刺激更大。对于Al_2O_3的添加,烧结机理没有改变。通过化学过程添加Al_2O_3可以促进氧化锆的晶粒生长,而由于通过这些化学过程均匀添加Al_2O_3,可以实现均匀的微观结构。

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