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- W2602533509 abstract "Abstract Experiments with CO 2 -blown hanging polystyrene (PS) films were carried out. The porosity of foams decreased with decreasing film thickness, indicating thus effects of heat and/or mass transfer. Taking into account the Joule–Thomson effect, mathematical model based on a simplified heat balance for the system PS + CO 2 at the conditions of PS saturation with CO 2 on one side and at the conditions of foam vitrification at glass transition temperature on the other side was derived to estimate the foam porosity. The model was applied to data on CO 2 -blown hanging films as well as literature data on foaming of PS particles. The trends of porosity dependence on saturation temperature and film thickness predicted by the model correspond to experimental results. The Joule–Thomson effect included in the modelling of the CO 2 foaming process significantly affects the foam porosity and improves the predictive capabilities of simple model based on enthalpy balance and thermodynamic data." @default.
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- W2602533509 date "2017-09-01" @default.
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- W2602533509 title "Vitrification conditions and porosity prediction of CO2 blown polystyrene foams" @default.
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- W2602533509 doi "https://doi.org/10.1016/j.supflu.2017.03.013" @default.
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