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

dc.contributor.authorObada, D.O.
dc.contributor.authorDodoo-Arhin, D.
dc.contributor.authorDauda, M.
dc.contributor.authoret al.
dc.date.accessioned2024-12-05T17:06:50Z
dc.date.issued2016
dc.descriptionResearch Article
dc.description.abstractPurpose – This work aims to analyze the effect of mechanical activation on structural disordering (amorphization) in an alumina-silica ceramics system and the 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°C 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 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 in the production of mullite from the specific stoichiometric batch formed.
dc.identifier.otherDOI 10.1108/WJE-08-2016-039
dc.identifier.urihttps://ugspace.ug.edu.gh/handle/123456789/42716
dc.language.isoen
dc.publisherWorld Journal of Engineering
dc.relation.ispartofseriesVol.; 13
dc.relation.ispartofseriesNo.; 4
dc.subjectMullite
dc.subjectMechanical activation
dc.subjectAmorphization
dc.subjectAgglomeration
dc.titleEffect of mechanical activation on mullite formation in an alumina-silica ceramics system at lower temperature
dc.typeArticle

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