Model of porous material sintering

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The mathematical model of inert porous materials sintering was proposed. As an initial data, the model uses the initial distribution of pore surface elements and time-temperature conditions of sintering. Sintering is modelled by the system of kinetic equations describing shrinkage of a material depending on its initial properties and a time-temperature condition of the process. Experiments on aluminum oxide powder sintering have been carried out in several time-temperature conditions in which linear shrinkage was traced in time. The initial powder particles size distribution was previously measured. A value of main parameters used in the model was determined according to the sample linear shrinkage data measured at the 10 C/min heating rate. Time dependences of linear shrinkage were calculated for the heating rates of 5 and 15 C/min. Comparison of the calculated dependences with experimental data for heating rates 5 and 15 С/min has shown the good qualitative and quantitative concordance.

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Sintering, ceramics, mathematical modelling

Короткий адрес: https://sciup.org/147159434

IDR: 147159434   |   DOI: 10.14529/mmp170311

Список литературы Model of porous material sintering

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