Article ID Journal Published Year Pages File Type
6725938 Construction and Building Materials 2013 10 Pages PDF
Abstract
This paper presents an integrated methodology for the prediction of the physical properties of porous materials implemented in gypsum plaster boards. The methodology, coupled with the reaction kinetics of gypsum boards thermo-chemistry, is programmed in an in-house developed code named GPRO in order to predict the physical properties related to microstructure, heat and mass transfer, of gypsum boards at elevated temperatures. To support the above, the authors propose a correlation between the tortuosity factor and the volume porosity of a porous material, applicable for the whole porosity range, and a correlation for the shrinkage percentage of different gypsum board types versus temperature. The predictions agree well with experimental data, accurately capture the main thermo-chemical processes taking place in a heated gypsum board. In the long run and after validation with appropriate experimental data the utilization of such a code could be an extremely useful tool, especially in cases where experimental measurements could be a time and cost intensive procedure. The current work presents such an experimental validation for one typical gypsum board.
Related Topics
Physical Sciences and Engineering Engineering Civil and Structural Engineering
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