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Reinforcement of Dental Methacrylate with Glass Fiber after Heated Silane Application

This study evaluated the influence of silane heat treatment and glass fiber fabrication type, industrially treated (I) or pure (P), on flexural and compressive strength of methacrylate resin bars (BISGMA/TEGDMA, 50/50%). Six groups (n = 10) were created: I-sil: I/silanated; P-sil: P-silanated; I-sil...

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Autores principales: Fonseca, Rodrigo Borges, de Paula, Marcella Silva, Favarão, Isabella Negro, Kasuya, Amanda Vessoni Barbosa, de Almeida, Letícia Nunes, Mendes, Gustavo Adolfo Martins, Carlo, Hugo Lemes
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4055137/
https://www.ncbi.nlm.nih.gov/pubmed/24967361
http://dx.doi.org/10.1155/2014/364398
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author Fonseca, Rodrigo Borges
de Paula, Marcella Silva
Favarão, Isabella Negro
Kasuya, Amanda Vessoni Barbosa
de Almeida, Letícia Nunes
Mendes, Gustavo Adolfo Martins
Carlo, Hugo Lemes
author_facet Fonseca, Rodrigo Borges
de Paula, Marcella Silva
Favarão, Isabella Negro
Kasuya, Amanda Vessoni Barbosa
de Almeida, Letícia Nunes
Mendes, Gustavo Adolfo Martins
Carlo, Hugo Lemes
author_sort Fonseca, Rodrigo Borges
collection PubMed
description This study evaluated the influence of silane heat treatment and glass fiber fabrication type, industrially treated (I) or pure (P), on flexural and compressive strength of methacrylate resin bars (BISGMA/TEGDMA, 50/50%). Six groups (n = 10) were created: I-sil: I/silanated; P-sil: P-silanated; I-sil/heat: I/silanated heated to 100°; P-sil/heat: P/silanated heated to 100°; (I: I/not silanated; and P: P/not silanated. Specimens were prepared for flexural strength (10 × 2 × 1 mm) and for compressive strength 9.5 × 5.5 × 3 mm) and tested at 0.5 mm/min. Statistical analysis demonstrated the following for flexural strength (P < 0.05): I-sil: 155.89 ± 45.27(BC); P-sil: 155.89 ± 45.27(BC); I-sil/heat: 130.20 ± 22.11(C); P-sil/heat: 169.86 ± 50.29(AB); I: 131.87 ± 15.86(C). For compressive strength, the following are demonstrated: I-sil: 1367.25 ± 188.77(ab); P-sil: 867.61 ± 102.76(d); I-sil/heat: 1162.98 ± 222.07(c); P-sil/heat: 1499.35 ± 339.06(a); and I: 1245.78 ± 211.16(bc). Due to the impossibility of incorporating the stipulated amount of fiber, P group was excluded. Glass fiber treatment with heated silane enhanced flexural and compressive strength of a reinforced dental methacrylate.
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spelling pubmed-40551372014-06-25 Reinforcement of Dental Methacrylate with Glass Fiber after Heated Silane Application Fonseca, Rodrigo Borges de Paula, Marcella Silva Favarão, Isabella Negro Kasuya, Amanda Vessoni Barbosa de Almeida, Letícia Nunes Mendes, Gustavo Adolfo Martins Carlo, Hugo Lemes Biomed Res Int Research Article This study evaluated the influence of silane heat treatment and glass fiber fabrication type, industrially treated (I) or pure (P), on flexural and compressive strength of methacrylate resin bars (BISGMA/TEGDMA, 50/50%). Six groups (n = 10) were created: I-sil: I/silanated; P-sil: P-silanated; I-sil/heat: I/silanated heated to 100°; P-sil/heat: P/silanated heated to 100°; (I: I/not silanated; and P: P/not silanated. Specimens were prepared for flexural strength (10 × 2 × 1 mm) and for compressive strength 9.5 × 5.5 × 3 mm) and tested at 0.5 mm/min. Statistical analysis demonstrated the following for flexural strength (P < 0.05): I-sil: 155.89 ± 45.27(BC); P-sil: 155.89 ± 45.27(BC); I-sil/heat: 130.20 ± 22.11(C); P-sil/heat: 169.86 ± 50.29(AB); I: 131.87 ± 15.86(C). For compressive strength, the following are demonstrated: I-sil: 1367.25 ± 188.77(ab); P-sil: 867.61 ± 102.76(d); I-sil/heat: 1162.98 ± 222.07(c); P-sil/heat: 1499.35 ± 339.06(a); and I: 1245.78 ± 211.16(bc). Due to the impossibility of incorporating the stipulated amount of fiber, P group was excluded. Glass fiber treatment with heated silane enhanced flexural and compressive strength of a reinforced dental methacrylate. Hindawi Publishing Corporation 2014 2014-05-20 /pmc/articles/PMC4055137/ /pubmed/24967361 http://dx.doi.org/10.1155/2014/364398 Text en Copyright © 2014 Rodrigo Borges Fonseca et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Fonseca, Rodrigo Borges
de Paula, Marcella Silva
Favarão, Isabella Negro
Kasuya, Amanda Vessoni Barbosa
de Almeida, Letícia Nunes
Mendes, Gustavo Adolfo Martins
Carlo, Hugo Lemes
Reinforcement of Dental Methacrylate with Glass Fiber after Heated Silane Application
title Reinforcement of Dental Methacrylate with Glass Fiber after Heated Silane Application
title_full Reinforcement of Dental Methacrylate with Glass Fiber after Heated Silane Application
title_fullStr Reinforcement of Dental Methacrylate with Glass Fiber after Heated Silane Application
title_full_unstemmed Reinforcement of Dental Methacrylate with Glass Fiber after Heated Silane Application
title_short Reinforcement of Dental Methacrylate with Glass Fiber after Heated Silane Application
title_sort reinforcement of dental methacrylate with glass fiber after heated silane application
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4055137/
https://www.ncbi.nlm.nih.gov/pubmed/24967361
http://dx.doi.org/10.1155/2014/364398
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