Fracture Strength and Bending of Fiber-Reinforced Composites and Metal Frameworks in Fixed Partial Dentures
Objective: This in vitro study evaluated the fracture strength and bending amount of twotypes of fiber reinforced composite (FRC) and cast metal frameworks used for fabrication of inlay fixed partial dentures (IFPDs). Materials and Methods: Seventy-two extracted first maxillary premolars and mola...
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Tehran University of Medical Sciences
2008-09-01
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doaj-067f4f792e2d424a880c609fb7c20ce72020-11-25T02:30:09ZengTehran University of Medical SciencesFrontiers in Dentistry2676-296X2008-09-0153Fracture Strength and Bending of Fiber-Reinforced Composites and Metal Frameworks in Fixed Partial Dentures M. Sadeghi0Associate Professor, Department of Restorative Dentistry, School of Dentistry, Rafsanjan University Objective: This in vitro study evaluated the fracture strength and bending amount of twotypes of fiber reinforced composite (FRC) and cast metal frameworks used for fabrication of inlay fixed partial dentures (IFPDs). Materials and Methods: Seventy-two extracted first maxillary premolars and molars (36 each) were embedded in acrylic resin to represent a missing of second maxillary premolar. FRC IFPDs were fabricated using Stick and Fiber-Braid fiber bundles and IFPDs using cast metal alloy (12 for each group). The specimens were stored for 2 weeks at 37°C(SD=1) in distilled water, thermocycled (5-55°C, x 2500) and statically loaded to fracture. The initial bending prior to fracture was evaluated. The data were analyzed using paired t-test and ANOVA test. Results: The fracture strength was significantly higher in the FRC groups (P<0.05); also, the fracture strength was significantly higher in Stick group than Fiber-Braid group (P<0.05). The amount of bending was significantly greater in the FRC groups (P<0.05). The amount of difference in bending between the two groups of FRC was not statistically significant. Conclusion: Within the limits of this in vitrostudy, the results suggest that the FRC IFPDs can be used as a conservative, esthetic alternative to the IFPDs with cast metal frameworks. The results of this study should be confirmed by long-term clinical investiga-tions. https://jdt.tums.ac.ir/index.php/jdt/article/view/155DenturePartialFixedResin-BondedInlaysfiberglass reinforced poly-mers |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
M. Sadeghi |
spellingShingle |
M. Sadeghi Fracture Strength and Bending of Fiber-Reinforced Composites and Metal Frameworks in Fixed Partial Dentures Frontiers in Dentistry Denture Partial Fixed Resin-Bonded Inlays fiberglass reinforced poly-mers |
author_facet |
M. Sadeghi |
author_sort |
M. Sadeghi |
title |
Fracture Strength and Bending of Fiber-Reinforced Composites and Metal Frameworks in Fixed Partial Dentures |
title_short |
Fracture Strength and Bending of Fiber-Reinforced Composites and Metal Frameworks in Fixed Partial Dentures |
title_full |
Fracture Strength and Bending of Fiber-Reinforced Composites and Metal Frameworks in Fixed Partial Dentures |
title_fullStr |
Fracture Strength and Bending of Fiber-Reinforced Composites and Metal Frameworks in Fixed Partial Dentures |
title_full_unstemmed |
Fracture Strength and Bending of Fiber-Reinforced Composites and Metal Frameworks in Fixed Partial Dentures |
title_sort |
fracture strength and bending of fiber-reinforced composites and metal frameworks in fixed partial dentures |
publisher |
Tehran University of Medical Sciences |
series |
Frontiers in Dentistry |
issn |
2676-296X |
publishDate |
2008-09-01 |
description |
Objective: This in vitro study evaluated the fracture strength and bending amount of twotypes of fiber reinforced composite (FRC) and cast metal frameworks used for fabrication of inlay fixed partial dentures (IFPDs).
Materials and Methods: Seventy-two extracted first maxillary premolars and molars (36 each) were embedded in acrylic resin to represent a missing of second maxillary premolar. FRC IFPDs were fabricated using Stick and Fiber-Braid fiber bundles and IFPDs using cast metal alloy (12 for each group). The specimens were stored for 2 weeks at 37°C(SD=1) in distilled water, thermocycled (5-55°C, x 2500) and statically loaded to fracture. The initial bending prior to fracture was evaluated. The data were analyzed using paired t-test and ANOVA test.
Results: The fracture strength was significantly higher in the FRC groups (P<0.05); also, the fracture strength was significantly higher in Stick group than Fiber-Braid group (P<0.05). The amount of bending was significantly greater in the FRC groups (P<0.05). The amount of difference in bending between the two groups of FRC was not statistically significant.
Conclusion: Within the limits of this in vitrostudy, the results suggest that the FRC IFPDs can be used as a conservative, esthetic alternative to the IFPDs with cast metal frameworks. The results of this study should be confirmed by long-term clinical investiga-tions.
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topic |
Denture Partial Fixed Resin-Bonded Inlays fiberglass reinforced poly-mers |
url |
https://jdt.tums.ac.ir/index.php/jdt/article/view/155 |
work_keys_str_mv |
AT msadeghi fracturestrengthandbendingoffiberreinforcedcompositesandmetalframeworksinfixedpartialdentures |
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