
pmid: 11854681
Provisional prostheses are subject to flexure under function. Selection of the appropriate material for their fabrication is difficult given the limited evidence-based information on the flexural strength of provisional resins.This study compared the flexural strength of 5 methacrylate-based resins and 8 bis-acryl resins used to fabricate provisional crowns and fixed partial dentures.Bar-type specimens were fabricated according to American National Standards Institute/American Dental Association specification 27. After being immersed in artificial saliva at 37 degrees C for 10 days, the specimens were fractured under 3-point loading in a universal testing machine at a crosshead speed of 0.75 mm/min. Maximal loads to fracture in Newtons were recorded. Mean flexural strengths were calculated in MPa (n = 10 per group). Comparisons were made with analysis of variance and Duncan's multiple range test (P<.05).Mean flexural strengths ranged from 56.2 to 123.6 MPa. There were 4 statistically similar groups. The group with the highest strengths consisted of 4 bis-acryl materials (Provipont, Integrity, Protemp 3 Garant, and Luxatemp).Within the limitations of this study, flexural strengths were material- rather than category-specific. Some, but not all, bis-acryl resins demonstrated significantly superior flexural strength over traditional methacrylate resins.
Dental Stress Analysis, Analysis of Variance, Compressive Strength, Crowns, Denture, Partial, Temporary, Acrylic Resins, Statistics, Nonparametric, Dental Restoration, Temporary, Tensile Strength, Materials Testing, Denture, Partial, Fixed, Bisphenol A-Glycidyl Methacrylate, Pliability
Dental Stress Analysis, Analysis of Variance, Compressive Strength, Crowns, Denture, Partial, Temporary, Acrylic Resins, Statistics, Nonparametric, Dental Restoration, Temporary, Tensile Strength, Materials Testing, Denture, Partial, Fixed, Bisphenol A-Glycidyl Methacrylate, Pliability
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