Title of article :
Physical properties and depth of cure of a new short fiber reinforced composite
Author/Authors :
Sufyan Garoushi، نويسنده , , Sufyan and Sنilynoja، نويسنده , , Eija and Vallittu، نويسنده , , Pekka K. and Lassila، نويسنده , , Lippo، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2013
Pages :
7
From page :
835
To page :
841
Abstract :
AbstractObjectives ermine the physical properties and curing depth of a new short fiber composite intended for posterior large restorations (everX Posterior) in comparison to different commercial posterior composites (Alert, TetricEvoCeram Bulk Fill, Voco X-tra base, SDR, Venus Bulk Fill, SonicFill, Filtek Bulk Fill, Filtek Superme, and Filtek Z250). In addition, length of fiber fillers of composite XENIUS base compared to the previously introduced composite Alert has been measured. als and methods llowing properties were examined according to ISO standard 4049: flexural strength, flexural modulus, fracture toughness, polymerization shrinkage and depth of cure. The mean and standard deviation were determined and all results were statistically analyzed with analysis of variance ANOVA (a = 0.05). s base composite exhibited the highest fracture toughness (4.6 MPa m1/2) and flexural strength (124.3 MPa) values and the lower shrinkage strain (0.17%) among the materials tested. Alert composite revealed the highest flexural modulus value (9.9 GPa), which was not significantly different from XENIUS base composite (9.5 GPa). Depth of cure of XENIUS base (4.6 mm) was similar than those of bulk fill composites and higher than other hybrid composites. The length of fiber fillers in XENIUS base was longer (1.3–2 mm) than in Alert (20–60 μm). sions w short fiber composite differed significantly in its physical properties compared to other materials tested. This suggests that the latter could be used in high-stress bearing areas.
Keywords :
Physical Properties , Depth of cure , Short fiber composite
Journal title :
Dental Materials
Serial Year :
2013
Journal title :
Dental Materials
Record number :
2318393
Link To Document :
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