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Effect of thermocycling on the flexural strength of porcelain laminate veneers

AIM: The aim of this study was to examine the impact of thermocycling on the flexural strength and development of surface flaws on the glazed surface of porcelain laminate veneer restorations with and without resin luting cement. MATERIALS AND METHODS: 80 Vitadur alpha dentin porcelain discs (10 mm...

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Detalles Bibliográficos
Autores principales: Subramanian, Deepa, Sivagami, G, Sendhilnathan, D, Rajmohan, CS
Formato: Texto
Lenguaje:English
Publicado: Medknow Publications 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2843534/
https://www.ncbi.nlm.nih.gov/pubmed/20351971
http://dx.doi.org/10.4103/0972-0707.48835
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author Subramanian, Deepa
Sivagami, G
Sendhilnathan, D
Rajmohan, CS
author_facet Subramanian, Deepa
Sivagami, G
Sendhilnathan, D
Rajmohan, CS
author_sort Subramanian, Deepa
collection PubMed
description AIM: The aim of this study was to examine the impact of thermocycling on the flexural strength and development of surface flaws on the glazed surface of porcelain laminate veneer restorations with and without resin luting cement. MATERIALS AND METHODS: 80 Vitadur alpha dentin porcelain discs (10 mm diameter, 0.9 mm thickness) were glazed on one side and divided into two groups: A (porcelain laminate veneer only without resin luting cement) and B (porcelain laminate veneer luted with resin cement), each containing 40 discs. The discs in groups A and B were then thermocycled at different temperatures and were subjected to SEM analysis to evaluate the effect of thermocycling on crack propagation. Mean flexural strength was determined by using the ball-on-ring test. Student's t -test was used to find out the difference between strength values of the thermocycled porcelain discs and discs luted with resin cement. RESULTS: SEM analysis revealed crack propagation in the subgroups subjected to extremes of temperature, i.e., 4 ± 1°C, 37 ± 1°C and 4 ± 1°C, 65 ± 1°C in the porcelain laminate veneers luted with resin cement. Flexural strength analysis revealed superior flexural strength for porcelain laminate veneers: 88.58 ± 6.94 MPa when compared to porcelain laminate veneers luted with resin cement: 8.42 ± 2.60 MPa. Results were tabulated and statistically analyzed using Student's t -test. CONCLUSION: Laminate veneer specimens exhibited greater flexural strength than those which were luted with resin cements. Laminate veneer specimens luted with resin cement and subjected to extremes of temperature, 4 ± 1°C and 37 ± 1°C and 4 ± 1°C and 65 ± 1°C, showed a marked decrease in flexural strength. After thermocycling at extremes of temperature, laminate veneer specimens luted with resin cement showed crack propagation. Fit of laminate veneers cannot / should not be compensated by the thickness of luting agent.
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spelling pubmed-28435342010-03-26 Effect of thermocycling on the flexural strength of porcelain laminate veneers Subramanian, Deepa Sivagami, G Sendhilnathan, D Rajmohan, CS J Conserv Dent Original Article AIM: The aim of this study was to examine the impact of thermocycling on the flexural strength and development of surface flaws on the glazed surface of porcelain laminate veneer restorations with and without resin luting cement. MATERIALS AND METHODS: 80 Vitadur alpha dentin porcelain discs (10 mm diameter, 0.9 mm thickness) were glazed on one side and divided into two groups: A (porcelain laminate veneer only without resin luting cement) and B (porcelain laminate veneer luted with resin cement), each containing 40 discs. The discs in groups A and B were then thermocycled at different temperatures and were subjected to SEM analysis to evaluate the effect of thermocycling on crack propagation. Mean flexural strength was determined by using the ball-on-ring test. Student's t -test was used to find out the difference between strength values of the thermocycled porcelain discs and discs luted with resin cement. RESULTS: SEM analysis revealed crack propagation in the subgroups subjected to extremes of temperature, i.e., 4 ± 1°C, 37 ± 1°C and 4 ± 1°C, 65 ± 1°C in the porcelain laminate veneers luted with resin cement. Flexural strength analysis revealed superior flexural strength for porcelain laminate veneers: 88.58 ± 6.94 MPa when compared to porcelain laminate veneers luted with resin cement: 8.42 ± 2.60 MPa. Results were tabulated and statistically analyzed using Student's t -test. CONCLUSION: Laminate veneer specimens exhibited greater flexural strength than those which were luted with resin cements. Laminate veneer specimens luted with resin cement and subjected to extremes of temperature, 4 ± 1°C and 37 ± 1°C and 4 ± 1°C and 65 ± 1°C, showed a marked decrease in flexural strength. After thermocycling at extremes of temperature, laminate veneer specimens luted with resin cement showed crack propagation. Fit of laminate veneers cannot / should not be compensated by the thickness of luting agent. Medknow Publications 2008 /pmc/articles/PMC2843534/ /pubmed/20351971 http://dx.doi.org/10.4103/0972-0707.48835 Text en © Journal of Conservative Dentistry http://creativecommons.org/licenses/by/2.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Subramanian, Deepa
Sivagami, G
Sendhilnathan, D
Rajmohan, CS
Effect of thermocycling on the flexural strength of porcelain laminate veneers
title Effect of thermocycling on the flexural strength of porcelain laminate veneers
title_full Effect of thermocycling on the flexural strength of porcelain laminate veneers
title_fullStr Effect of thermocycling on the flexural strength of porcelain laminate veneers
title_full_unstemmed Effect of thermocycling on the flexural strength of porcelain laminate veneers
title_short Effect of thermocycling on the flexural strength of porcelain laminate veneers
title_sort effect of thermocycling on the flexural strength of porcelain laminate veneers
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2843534/
https://www.ncbi.nlm.nih.gov/pubmed/20351971
http://dx.doi.org/10.4103/0972-0707.48835
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