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Numerical modeling of drying behavior of ceramic tiles with high silica content of kaolin

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dc.contributor.author Jayaweera, JMN
dc.contributor.author Narayana, M
dc.contributor.author Adikary, SU
dc.contributor.editor Abeysooriya, R
dc.contributor.editor Adikariwattage, V
dc.contributor.editor Hemachandra, K
dc.date.accessioned 2024-03-05T04:51:23Z
dc.date.available 2024-03-05T04:51:23Z
dc.date.issued 2023-12-09
dc.identifier.citation J. M. N. Jayaweera, M. Narayana and S. U. Adikary, "Numerical Modeling of Drying Behavior of Ceramic Tiles with High Silica Content of Kaolin," 2023 Moratuwa Engineering Research Conference (MERCon), Moratuwa, Sri Lanka, 2023, pp. 592-597, doi: 10.1109/MERCon60487.2023.10355459. en_US
dc.identifier.uri http://dl.lib.uom.lk/handle/123/22257
dc.description.abstract The drying process of the green ceramic body is concurrent and coupled with heat and mass transfer phenomena. Dimensional variations and mechanical stresses occur within the body during the drying process. In this research, the drying behavior of ceramic tile was investigated, and a ceramic tile body mix was developed using M2 kaolin clay as the main clay mineral. Initially, the composition and structure of the M2 kaolin clay were analyzed using X-ray diffraction and wet chemical analysis, and it consists of 56.78 % silica. The body mix of the green ceramic tile was prepared, and the particle size distribution was analyzed. The powder pressing method was used to obtain the shape of the tiles. Samples were dried in an oven at 80 oC and the moisture variation of the green ceramic tile was determined with time. A mathematical relationship was formulated to determine the drying behavior of green ceramic tiles. An unsteady three-dimensional model was formulated and simulated in the computational fluid dynamics (CFD) framework. Results developed by the simulated model were compared with data obtained by experiments conducted using green ceramic tiles. The model results were validated and complied with the experiment results, and the R2 value was 0.9 en_US
dc.language.iso en en_US
dc.publisher IEEE en_US
dc.relation.uri https://ieeexplore.ieee.org/document/10355459 en_US
dc.subject Kaolin en_US
dc.subject Ceramic tile en_US
dc.subject Drying temperature en_US
dc.subject moisture content en_US
dc.subject CFD en_US
dc.title Numerical modeling of drying behavior of ceramic tiles with high silica content of kaolin en_US
dc.type Conference-Full-text en_US
dc.identifier.faculty Engineering en_US
dc.identifier.department Engineering Research Unit, University of Moratuwa en_US
dc.identifier.year 2023 en_US
dc.identifier.conference Moratuwa Engineering Research Conference 2023 en_US
dc.identifier.place Katubedda en_US
dc.identifier.pgnos pp. 592-597 en_US
dc.identifier.proceeding Proceedings of Moratuwa Engineering Research Conference 2023 en_US
dc.identifier.email jayaweerajmn.20@uom.lk en_US
dc.identifier.email mahinsasa@uom.lk en_US
dc.identifier.email suadi@uom.lk en_US


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