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Dent Mater J ; 37(3): 365-373, 2018 Jun 08.
Article in English | MEDLINE | ID: mdl-29311433

ABSTRACT

We investigated the viscoelastic response of direct and indirect dental restorative composites by the novel technique of AM-FM atomic force microscopy. We selected four composites for direct restorations (Adonis, Optifil, EPH, CME) and three composites for indirect restorations (Gradia, Estenia, Signum). Scanning electron microscopy with micro-analysis was also used to support the results. The mean storage modulus of all composites was in the range of 10.2-15.2 GPa. EPH was the stiffest (p<0.05 vs. all other composites but Adonis and Estenia), while no significant difference was observed between direct and indirect group (p≥0.05). For the loss tangent, Gradia had the highest value (~0.3), different (p<0.05) from Optifil (~0.01) and EPH (~0.04) despite the large coefficient of variation (24%), and the direct composites showed higher loss tangent (p<0.01) than the indirect composites. All composites exhibited minor contrast at the edge of fillers, showing that these are pre-polymerized, as confirmed by EDS.


Subject(s)
Composite Resins/chemistry , Dental Materials/chemistry , Adonis , Elasticity , Materials Testing , Methacrylates , Microscopy, Atomic Force , Microscopy, Electron, Scanning , Polymerization , Polyurethanes , Surface Properties , Viscosity
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