Publication | Closed Access
Water Vapor Sorption Properties of Polyethylene Terephthalate over a Wide Range of Humidity and Temperature
42
Citations
55
References
2017
Year
EngineeringResponsive PolymersChemistrySoft MatterSorption CoolingRelative HumidityPolymersChemical EngineeringPolymer TechnologyPolymer ProcessingPolymer PhysicPolymer ChemistryMaterials SciencePolyethylene TerephthalatePolymer StabilitySimplified State DiagramClassical Fickian DiffusionPolymer AnalysisPlasticityPolymer SolutionPolymer SciencePolymer CharacterizationPolymer PropertyWide Range
The dynamic and equilibrium water vapor sorption properties of amorphous polyethylene terephthalate were determined via gravimetric analysis over a wide range of temperatures (23-70 °C) and humidities (0-90% RH). At low temperature and relative humidity, the dynamics of the sorption process was Fickian. Increasing the temperature or relative humidity induced a distinct up-swing effect, which was associated with a plasticization/clustering phenomenon. For high temperatures and relative humidity, a densification of the polymer was evidenced. In addition to the classical Fickian diffusion, a new parameter was introduced to express the structural modifications of PET. Finally, two partial pressures were defined as thresholds that control the transition between these three phases. A simplified state diagram was finally proposed. In addition, the thermal dependence of these sorption modes was also determined and reported. The enthalpy of Henry's water sorption and the activation energy of diffusion were independent of vapor pressure and followed an Arrhenius law.
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