Simulation of glass transition of polystyrene

The physical aging kinetics of polystyrene was utilized to simulate or predict the glass transition behavior of the polymer. The parameters that characterize the glass transition behavior are the glass transition Tg, aging enthalpy ΔH, activation ethalphy ΔHa, cooling rate R and Arhenius constant...

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Main Authors: Supiyah, S. N., Arsad, Agus
Format: Conference or Workshop Item
Language:English
Published: 2005
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Online Access:http://eprints.utm.my/id/eprint/5359/1/S.N.Supiyah2005_SimulationOfGlassTransitionOfPolystyrene.pdf
http://eprints.utm.my/id/eprint/5359/
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Institution: Universiti Teknologi Malaysia
Language: English
id my.utm.5359
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spelling my.utm.53592010-06-01T15:29:38Z http://eprints.utm.my/id/eprint/5359/ Simulation of glass transition of polystyrene Supiyah, S. N. Arsad, Agus T Technology (General) The physical aging kinetics of polystyrene was utilized to simulate or predict the glass transition behavior of the polymer. The parameters that characterize the glass transition behavior are the glass transition Tg, aging enthalpy ΔH, activation ethalphy ΔHa, cooling rate R and Arhenius constant A. An experimented kinetic data of aged polystyrene was acquired from literature. The kinetic equations of polymer aging were manipulated to simulate the profiles of fictive temperature, heat capacity, heat flow and temperature change. The variation of these profiles on changes of cooling rate, R, non-linearity parameter X and distribution constant β were observed. Finally, these data were graphically analyzed and manipulated to acquire values of Tg, ΔH and also to back-calculate the aging constant: A and ΔHa. These calculated values were compared with experimented results in order to evaluate the feasibility of the simulation. These results and curve patterns matched that of the experimented data. It was also found that X and β impose little effect on Tg but influence a lot the thermal properties and rate of glass formation. R values on the other hand are influential on glass transition temperature. The results of the analysis suggested that the simulation is feasible in studying on physical aging and glass transition phenomenon of polymers. 2005 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/5359/1/S.N.Supiyah2005_SimulationOfGlassTransitionOfPolystyrene.pdf Supiyah, S. N. and Arsad, Agus (2005) Simulation of glass transition of polystyrene. In: Simposium Polimer Kebangsaan Ke-5, 23-24 August 2005, Hotel Residence, UNITEN.
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic T Technology (General)
spellingShingle T Technology (General)
Supiyah, S. N.
Arsad, Agus
Simulation of glass transition of polystyrene
description The physical aging kinetics of polystyrene was utilized to simulate or predict the glass transition behavior of the polymer. The parameters that characterize the glass transition behavior are the glass transition Tg, aging enthalpy ΔH, activation ethalphy ΔHa, cooling rate R and Arhenius constant A. An experimented kinetic data of aged polystyrene was acquired from literature. The kinetic equations of polymer aging were manipulated to simulate the profiles of fictive temperature, heat capacity, heat flow and temperature change. The variation of these profiles on changes of cooling rate, R, non-linearity parameter X and distribution constant β were observed. Finally, these data were graphically analyzed and manipulated to acquire values of Tg, ΔH and also to back-calculate the aging constant: A and ΔHa. These calculated values were compared with experimented results in order to evaluate the feasibility of the simulation. These results and curve patterns matched that of the experimented data. It was also found that X and β impose little effect on Tg but influence a lot the thermal properties and rate of glass formation. R values on the other hand are influential on glass transition temperature. The results of the analysis suggested that the simulation is feasible in studying on physical aging and glass transition phenomenon of polymers.
format Conference or Workshop Item
author Supiyah, S. N.
Arsad, Agus
author_facet Supiyah, S. N.
Arsad, Agus
author_sort Supiyah, S. N.
title Simulation of glass transition of polystyrene
title_short Simulation of glass transition of polystyrene
title_full Simulation of glass transition of polystyrene
title_fullStr Simulation of glass transition of polystyrene
title_full_unstemmed Simulation of glass transition of polystyrene
title_sort simulation of glass transition of polystyrene
publishDate 2005
url http://eprints.utm.my/id/eprint/5359/1/S.N.Supiyah2005_SimulationOfGlassTransitionOfPolystyrene.pdf
http://eprints.utm.my/id/eprint/5359/
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