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Flexural strength and microhardness of anterior composites after accelerated aging

BACKGROUND: This study aimed to evaluate the flexural strength and microhardness of three different anterior composites after 10 000 thermocycles. MATERIAL AND METHODS: The mechanical properties of a nano-fill composite (Filtek Ultimate Universal Restorative (FUR) (Enamel)), a nano-hybrid composite...

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Autores principales: Pala, Kanşad, Tekçe, Neslihan, Tuncer, Safa, Demirci, Mustafa, Öznurhan, Fatih, Serim, Merve
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Medicina Oral S.L. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5347293/
https://www.ncbi.nlm.nih.gov/pubmed/28298986
http://dx.doi.org/10.4317/jced.53463
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author Pala, Kanşad
Tekçe, Neslihan
Tuncer, Safa
Demirci, Mustafa
Öznurhan, Fatih
Serim, Merve
author_facet Pala, Kanşad
Tekçe, Neslihan
Tuncer, Safa
Demirci, Mustafa
Öznurhan, Fatih
Serim, Merve
author_sort Pala, Kanşad
collection PubMed
description BACKGROUND: This study aimed to evaluate the flexural strength and microhardness of three different anterior composites after 10 000 thermocycles. MATERIAL AND METHODS: The mechanical properties of a nano-fill composite (Filtek Ultimate Universal Restorative (FUR) (Enamel)), a nano-hybrid composite (Clearfil Majesty ES2 (ES2) (Enamel)), and a micro-hybrid composite (G Aenial Anterior (GAA)) were investigated in this study. For the microhardness test, 8-mm diameter and 2-mm thickness composite discs were used (n = 10), and for the flexural strength test, 25x2x2 mm bar-shaped specimens were prepared (n = 13). The specimens were tested at 24 h and after 10 000 thermocycles. Data were analyzed using two-way analysis of variance and the post-hoc Tukey test (p < .05). Correlations between hardness and flexural strength were calculated using Pearson’s correlation analysis. RESULTS: There was a significant difference in the microhardness values of the materials (p < .05). FUR exhibited significantly higher microhardness than ES2 and GAA. However, the flexural strength of three composites was statistically similar at 24 h (p > .05). Pearson correlation analysis revealed that there was a negative relationship between the mean hardness and flexural strength values (correlation coefficient = -0.367, p = .043). After 10 000 thermocycles, microhardness values of each material and flexural strength of ES2 and GAA decreased significantly according to 24 h. CONCLUSIONS: The nano-fill composite FUR displayed significantly higher microhardness values. However, each resin composite was statistically similar for flexural strength values. Ten thousand thermocycles significantly affected microhardness and flexural strength. Key words:Flexural strength, microhardness, anterior composites.
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spelling pubmed-53472932017-03-15 Flexural strength and microhardness of anterior composites after accelerated aging Pala, Kanşad Tekçe, Neslihan Tuncer, Safa Demirci, Mustafa Öznurhan, Fatih Serim, Merve J Clin Exp Dent Research BACKGROUND: This study aimed to evaluate the flexural strength and microhardness of three different anterior composites after 10 000 thermocycles. MATERIAL AND METHODS: The mechanical properties of a nano-fill composite (Filtek Ultimate Universal Restorative (FUR) (Enamel)), a nano-hybrid composite (Clearfil Majesty ES2 (ES2) (Enamel)), and a micro-hybrid composite (G Aenial Anterior (GAA)) were investigated in this study. For the microhardness test, 8-mm diameter and 2-mm thickness composite discs were used (n = 10), and for the flexural strength test, 25x2x2 mm bar-shaped specimens were prepared (n = 13). The specimens were tested at 24 h and after 10 000 thermocycles. Data were analyzed using two-way analysis of variance and the post-hoc Tukey test (p < .05). Correlations between hardness and flexural strength were calculated using Pearson’s correlation analysis. RESULTS: There was a significant difference in the microhardness values of the materials (p < .05). FUR exhibited significantly higher microhardness than ES2 and GAA. However, the flexural strength of three composites was statistically similar at 24 h (p > .05). Pearson correlation analysis revealed that there was a negative relationship between the mean hardness and flexural strength values (correlation coefficient = -0.367, p = .043). After 10 000 thermocycles, microhardness values of each material and flexural strength of ES2 and GAA decreased significantly according to 24 h. CONCLUSIONS: The nano-fill composite FUR displayed significantly higher microhardness values. However, each resin composite was statistically similar for flexural strength values. Ten thousand thermocycles significantly affected microhardness and flexural strength. Key words:Flexural strength, microhardness, anterior composites. Medicina Oral S.L. 2017-03-01 /pmc/articles/PMC5347293/ /pubmed/28298986 http://dx.doi.org/10.4317/jced.53463 Text en Copyright: © 2017 Medicina Oral S.L. http://creativecommons.org/licenses/by/2.5/ 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 Research
Pala, Kanşad
Tekçe, Neslihan
Tuncer, Safa
Demirci, Mustafa
Öznurhan, Fatih
Serim, Merve
Flexural strength and microhardness of anterior composites after accelerated aging
title Flexural strength and microhardness of anterior composites after accelerated aging
title_full Flexural strength and microhardness of anterior composites after accelerated aging
title_fullStr Flexural strength and microhardness of anterior composites after accelerated aging
title_full_unstemmed Flexural strength and microhardness of anterior composites after accelerated aging
title_short Flexural strength and microhardness of anterior composites after accelerated aging
title_sort flexural strength and microhardness of anterior composites after accelerated aging
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5347293/
https://www.ncbi.nlm.nih.gov/pubmed/28298986
http://dx.doi.org/10.4317/jced.53463
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