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Microstructure-controlled effects on temperature reduction of α-Al_2O_3 crystallite formation

机译:微观结构对α-Al_2O_3微晶形成温度降低的影响

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摘要

The inter-particle relationship effects on a temperature reduction and simultaneity of α-crystallite formation during θ- to α-phase transformation were examined using DTA, XRD, and TEM techniques. Three powder systems derived from the same θ-powder of average crystallite size 15.2 nm were prepared, with the intention of creating different microstructure for each powder systems as: as-received, pre-treated by homogenization with a mechanical stirring accompanied by pH adjustment for dispersion, and homogenized and additionally uniaxial-pressed to compacts with higher bulk density. Activation energies of θ-crystallite growth occurring in the three powder systems were also obtained based on an isothermal model of grain growth rate equation. It is found that the temperature reduction characteristics can be related to the homogeneity as well as the inter θ-Al_2O_3 crystallite distances behaved by the θ-crystallites. Higher homogeneity and shorter inter-crystallite distance for the θ-powder systems may favor the α-crystallite formation at lower temperatures over a shorter duration of phase transformation. Furthermore, activation energies of θ-crystallite growth can be reduced. And α-Al_2O_3 powders fabricated can be mono-sized and free of vermicular growth.
机译:使用DTA,XRD和TEM技术研究了颗粒间关系对θ相转变为α相期间降温和同时形成α微晶的影响。制备了三种由相同的平均微晶尺寸为15.2 nm的θ粉末衍生的粉末系统,目的是为每种粉末系统创建不同的微观结构,如下所示:原样,通过机械搅拌均质化并进行pH调节以进行预处理分散,均质并单轴压制成具有更高堆积密度的压块。基于晶粒生长速率方程的等温模型,还获得了三种粉末体系中发生的θ-微晶生长的活化能。结果发现,降温特性可能与均匀性以及θ-Al_2O_3晶粒间的间距有关。 θ-粉末体系的较高均匀性和较短的晶粒间距离可能会在较短的相变持续时间内,在较低的温度下促进α晶粒的形成。此外,可以减少θ-微晶生长的活化能。并且所制备的α-Al_2O_3粉末可以是单一尺寸的并且没有蠕虫生长。

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