Title of article :
Effect of curing on the broadband dielectric spectroscopy of powder coating
Author/Authors :
Samy A. Madbouly، نويسنده , , Ahmed F. Serag Eldin، نويسنده , , Ashraf A. Mansour، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2007
Pages :
9
From page :
2462
To page :
2470
Abstract :
The effect of curing process of thermosetting powder coating consists of carboxylated polyester resin cured with triglycidyl isocyanurate has been investigated using broadband dielectric relaxation spectroscopy over a wide range of frequency (10−1–106 Hz) and temperature (70–105 °C) for different constant curing times. The molecular dynamics of the glass relaxation process (α-process) was investigated as a function of curing time, frequency, and temperature. It has been found that, only one common α-relaxation process has been observed for all measured samples of different degree of curing stages, its dynamics and broadness were found to be curing time dependent. In addition, the curing time dependence of the dielectric relaxation strength, Δε, has also been examined for the α and β-relaxation processes. The Δε for the two relaxation processes decreased strongly at the beginning of curing process and then became almost constant at longer curing times. This finding implied that the numbers of reoriented dipoles decrease with curing time as a result of the formation of three-dimensional polymer network. Furthermore, the dislocation energy, εs, calculated from the Meander model was found to be increased with increasing the curing time, i.e. the formation of a three-dimensional polymer network produces many structural defects or dislocation points. In addition, the activation energy of the curing process was calculated from the analysis of the calorimetric exothermic peaks of the curing process at different heating rates.
Keywords :
POWDER COATING , Curing kinetics , Molecular dynamics , Dielectric Strength , dielectric relaxation spectroscopy
Journal title :
European Polymer Journal(EPJ)
Serial Year :
2007
Journal title :
European Polymer Journal(EPJ)
Record number :
1227210
Link To Document :
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