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首页> 外文期刊>Journal of Materials Science >Sintering mechanism of fine zirconia powders with alumina added by powder mixing and chemical processes
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Sintering mechanism of fine zirconia powders with alumina added by powder mixing and chemical processes

机译:粉末混合和化学法制备氧化铝氧化锆细粉的烧结机理。

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摘要

The present study examined the sintering behavior of fine zirconia powders (containing 2.9 mol% Y2O3) with and without small amounts of Al2O3 added by different ways: powder mixing (PM), homogeneous precipitation (HP), and hydrolysis of alkoxide (HA). The initial sintering behavior was examined by both measurement methods of a constant rate of heating and isothermal shrinkage. In the PM process, Al2O3 particles pinned the shrinkage of zirconia powder compact at the initial stage and diffuse toward zirconia surface to enhance the sintering. This initial sintering mechanism was explained by the grain-boundary diffusion for the Al2O3-free powder and the volume diffusion for Al2O3-added powder. When Al2O3 was added to zirconia powder by HP and HA processes, the densification rate was more stimulated compared to the PM process. The initial sintering mechanism did not change by the way for Al2O3 addition. The Al2O3 addition by chemical processes of HP and HA tended to enhance the grain growth of zirconia, while the uniform microstructure was achieved because of homogeneous addition of Al2O3 by those processes.
机译:本研究研究了含和不含少量Al 2 的氧化锆细粉(包含2.9 mol%Y 2 O 3 )的烧结行为。 O 3 的添加方式不同:粉末混合(PM),均相沉淀(HP)和醇盐水解(HA)。通过恒定加热速率和等温收缩率的两种测量方法来检查初始烧结行为。在粉末冶金过程中,Al 2 O 3 颗粒在初始阶段固定了氧化锆粉末压块的收缩并向氧化锆表面扩散,从而增强了烧结。最初的烧结机理是通过不含Al 2 O 3 的粉末的晶界扩散和Al 2 O的体积扩散来解释的 3 添加的粉末。通过HP和HA工艺将Al 2 O 3 添加到氧化锆粉末中,与PM工艺相比,致密化速率受到了更大的刺激。 Al 2 O 3 的添加方式并未改变初始烧结机理。 HP和HA的化学过程添加Al 2 O 3 倾向于促进氧化锆的晶粒生长,而均匀添加Al 2 O 3

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