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Effect of mechanical activation on mullite formation in an alumina-silica ceramics system at lower temperature

机译:较低温度下机械活化对氧化铝-二氧化硅陶瓷体系中莫来石形成的影响

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Purpose - This work aims to analyze the effect of mechanical activation on structural disordering (amorphization) in an alumina-silica ceramics system and formation of mullite most notably at a lower temperature using X-ray diffraction (XRD). Also, an objective of this work is to focus on a low-temperature fabrication route for the production of mullite powders. Design/methodology/approach - A batch composition of kaolin, alumina and silica was manually pre-milled and then mechanically activated in a ball mill for 30 and 60 min. The activated samples were sintered at 1,150℃ for a soaking period of 2 h. Mullite formation was characterized by XRD and scanning electron microscopy (SEM). Findings - It was determined that the mechanical activation increased the quantity of the mullite phase. SEM results revealed that short milling times only helped in mixing of the precursor powders and caused partial agglomeration, while longer milling times, however, resulted in greater agglomeration. Originality/value - It is noted that, a manual pre-milling of approximately 20 min and a ball milling approach of 60 min milling time can be suggested as the optimum milling time for the temperature decrease succeeded for the production of mullite from the specific stoichiometric batch formed.
机译:目的-这项工作旨在分析机械活化对氧化铝-二氧化硅陶瓷系统中结构无序化(非晶化)和莫来石形成的影响,尤其是在较低的温度下使用X射线衍射(XRD)分析。而且,这项工作的目标是集中于生产莫来石粉的低温制造路线。设计/方法/方法-手动预研磨高岭土,氧化铝和二氧化硅的批料组合物,然后在球磨机中机械活化30分钟和60分钟。活化后的样品在1,150℃下烧结2 h。通过X射线衍射和扫描电子显微镜(SEM)表征莫来石的形成。发现-确定机械活化增加了莫来石相的量。 SEM结果表明,短的研磨时间仅有助于前体粉末的混合并引起部分团聚,而较长的研磨时间却导致更大的团聚。独创性/价值-应当指出,建议手动研磨约20分钟,球磨方法约60分钟,因为根据特定的化学计量比成功生产了莫来石时,降低温度的最佳研磨时间已成功批处理形成。

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