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首页> 外文期刊>CERAMICS INTERNATIONAL >Role of immiscible and miscible second phases on the sintering kinetics and microstructural development of nano-crystalline α-Al_2O_3-based materials
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Role of immiscible and miscible second phases on the sintering kinetics and microstructural development of nano-crystalline α-Al_2O_3-based materials

机译:不混溶和可混溶的第二相在纳米晶α-Al_2O_3基材料的烧结动力学和微观结构发展中的作用

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摘要

An ultra-fine alumina powder was doped with yttrium or zirconium chloride to produce Al_2O_3-5 vol.%ZrO_2 (AZ-5) and Al_2O_3-5 vol.%YAG (AY-5) composite powders. Composite samples and pure alumina, used as areference, were submitted to dilatometric analyses up to 1500-1550 °C at 2,5 and 10 °C/min for supplying the data required for the modeling of their sintering behaviour. The best fit for the three samples was obtained by applying an Avrami-Erofeev nucleation and growth model (An) and a subsequent power law reaction (AnFn). The evolution of the activation energy with densification is given for the three samples, as well as the prediction of their best sintering conditions. Finally, densification mechanism for the immiscible (AZ-5) and miscible (AY-5) systems are hypothesized and correlated with their final microstructures.
机译:将超细氧化铝粉末掺杂钇或氯化锆,以生产Al_2O_3-5体积%ZrO_2(AZ-5)和Al_2O_3-5体积%YAG(AY-5)复合粉末。将复合样品和纯氧化铝作为参考样品,以2.5和10°C / min的速度进行了高达1500至1550°C的膨胀分析,以提供对其烧结行为进行建模所需的数据。通过应用Avrami-Erofeev成核和生长模型(An)和随后的幂定律反应(AnFn),获得了三个样品的最佳拟合。给出了三个样品的致密化过程中活化能的演变,以及对它们最佳烧结条件的预测。最后,假设了不相溶(AZ-5)和相溶(AY-5)系统的致密化机理,并与它们的最终微观结构相关。

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