Effect of alloy type and casting technique on the fracture strength of implant-cemented structures

To evaluate the influence of alloy type and casting procedure on the fracture strength (FS) of metallic frameworks for implant-supported fixed prostheses. Thirty three-unit structures for lower posterior bridges were waxed-up and randomly assigned to two groups (n=15) according to alloy type and cas...

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Veröffentlicht in:Medicina oral, patología oral y cirugía bucal patología oral y cirugía bucal, 2011-07, Vol.16 (4), p.e619-e625
Hauptverfasser: Castillo-de Oyagüe, Raquel, Osorio, Raquel, Lynch, Christopher, Gilmour, Alan, Toledano, Manuel
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Sprache:eng
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Zusammenfassung:To evaluate the influence of alloy type and casting procedure on the fracture strength (FS) of metallic frameworks for implant-supported fixed prostheses. Thirty three-unit structures for lower posterior bridges were waxed-up and randomly assigned to two groups (n=15) according to alloy type and casting technique: Group 1 (C): cobalt-chromium cast in a centrifugal machine (TS1, Degussa-Hüls); Group 2 (T): titanium cast in a pressure-differential device (Cyclarc II, Morita). Each structure was cemented onto two prefabricated abutments under a constant seating pressure. After 6 months of water aging, samples were loaded in a static universal testing machine (EFH/5/FR, Microtest) until fracture. Axial compressive loads were applied at the central fossa of the pontics. FS data were recorded and surface topography of the fractured connectors was SEM-analyzed. A Chi-Square test was performed to assess the dependence of pores on the alloy type and casting procedure. ANOVA and Student-Newman-Keuls (SNK) tests were run for FS comparisons (p
ISSN:1698-6946
1698-6946
DOI:10.4317/medoral.16.e619