Journal of Polymer Science Part B Polymer Physics · 1999 · 271 citations · 34 references
EngineeringDifferential Scanning CalorimetryThermal ProcessingChemistryMiddle EndothermsThermophysicsThermodynamicsSolidificationPolymer ChemistryThermoanalytical MethodMaterials SciencePolymer AnalysisHeat TransferHigh EndothermsCrystallographyPolymer MeltHigh Temperature MaterialsPolymer ScienceButylene SuccinateThermal EngineeringThermophysical PropertyHydrothermal Processing
The melting behavior of isothermally crystallized poly(butylene succinate) (PBS) has been investigated using differential scanning calorimetry (DSC) and wide-angle X-ray analysis. The samples crystallized between 80°C to 100°C show middle endotherm at the position just before the high exotherm, while the others under 80°C show two endotherms (low and high). From the results of the melting peak vs. crystallization temperature plot, it was suggested that the middle endotherm corresponds to the melting process of the original crystallites and the high endotherms to the melting process of the recrystallized ones. As the DSC heating rate was increased, the peak temperature of the low and middle endotherms increased and that of the high endotherm decreased, indicating that the low endotherm was due to the original crystallites as well as the middle endotherm. Consequently, in the heating scan of PBS, the existence of two kinds of morphologically different crystallites as well as the process of melting and recrystallization becomes evident. © 1999 John Wiley & Sons, Inc. J Polym Sci B: Polym Phys 37: 1357–1366, 1999
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