Title of article :
Influence of curing protocol on selected properties of light-curing polymers: Degree of conversion, volume contraction, elastic modulus, and glass transition temperature
Author/Authors :
Dewaele، نويسنده , , Magali and Asmussen، نويسنده , , Erik and Peutzfeldt، نويسنده , , Anne and Munksgaard، نويسنده , , E. Christian and Benetti، نويسنده , , Ana R. and Finné، نويسنده , , Gauthier and Leloup، نويسنده , , Gaëtane and Devaux، نويسنده , , Jacques، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2009
Abstract :
Objectives
rpose of this study was to investigate the effect of light-curing protocol on degree of conversion (DC), volume contraction (C), elastic modulus (E), and glass transition temperature (Tg) as measured on a model polymer. It was a further aim to correlate the measured values with each other.
s
ent light-curing protocols were used in order to investigate the influence of energy density (ED), power density (PD), and mode of cure on the properties. The modes of cure were continuous, pulse-delay, and stepped irradiation. DC was measured by Raman micro-spectroscopy. C was determined by pycnometry and a density column. E was measured by a dynamic mechanical analyzer (DMA), and Tg was measured by differential scanning calorimetry (DSC). Data were submitted to two- and three-way ANOVA, and linear regression analyses.
s
, and mode of cure influenced DC, C, E, and Tg of the polymer. A significant positive correlation was found between ED and DC (r = 0.58), ED and E (r = 0.51), and ED and Tg (r = 0.44). Taken together, ED and PD were significantly related to DC and E. The regression coefficient was positive for ED and negative for PD. Significant positive correlations were detected between DC and C (r = 0.54), DC and E (r = 0.61), and DC and Tg (r = 0.53). Comparisons between continuous and pulse-delay modes of cure showed significant influence of mode of cure: pulse-delay curing resulted in decreased DC, decreased C, and decreased Tg. Influence of mode of cure, when comparing continuous and step modes of cure, was more ambiguous.
icance
lex relationship exists between curing protocol, microstructure of the resin and the investigated properties. The overall performance of a composite is thus indirectly affected by the curing protocol adopted, and the desired reduction of C may be in fact a consequence of the decrease in DC.
Keywords :
Elastic modulus , Degree of conversion , Dental materials , Volume contraction , Dental polymers , Resin composite , glass transition temperature , Light-curing , Soft-start
Journal title :
Dental Materials
Journal title :
Dental Materials