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Role of coefficient of thermal expansion on bond strength of ceramic veneered yttrium-stabilized zirconia
BACKGROUND: Incompatible coefficient of thermal expansion (CTE) is supposed to be a reason for chipping of ceramic veneered zirconia. This study evaluates the effect of veneering ceramic at varied CTE on bond strength to zirconia. MATERIAL AND METHODS: Zirconia disks (Z, Ø 10 mm, 1.0 mm thickness) w...
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Medicina Oral S.L.
2018
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5923890/ https://www.ncbi.nlm.nih.gov/pubmed/29721230 http://dx.doi.org/10.4317/jced.54605 |
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author | Juntavee, Niwut Dangsuwan, Chollada |
author_facet | Juntavee, Niwut Dangsuwan, Chollada |
author_sort | Juntavee, Niwut |
collection | PubMed |
description | BACKGROUND: Incompatible coefficient of thermal expansion (CTE) is supposed to be a reason for chipping of ceramic veneered zirconia. This study evaluates the effect of veneering ceramic at varied CTE on bond strength to zirconia. MATERIAL AND METHODS: Zirconia disks (Z, Ø 10 mm, 1.0 mm thickness) were prepared from Y-TZP (Cercon®) and sintered at 1350°C for 6 hours. All zirconia disks were veneered with ceramics ((Ø 7.0 mm, 1.5 mm thickness) with varied CTE including VITADur® alpha (VDα), VITAVM®7 (VM7), VITAVM®9 (VM9), Cercon® ceramkiss (CCK), IPSe.max® ceram (IeC), and IPS dSIGN® (IdS) (n=15). The specimens were thermo-cycled (5-55 °C, 500 cycles) prior to determine the shear bond strength on a universal testing machine. The veneering ceramic and zirconia rods (Ø 4 mm, 30 mm length) were prepared for CTE evaluation. ANOVA and Tukey’s multiple comparisons were used to determine the statistically significant difference (α=0.05). Weibull analysis was applied for survival probability, Weibull modulus (m), and characteristics strength (σo) of the shear bond. The interfaces were microscopically examined. The phase transformation of zirconia was determined using X ray diffraction. RESULTS: The mean±sd (MPa), m, and σo of bond strength were 20.45±2.32, 9.25, and 21.53 for Z-VDα, 19.47±4.53, 4.66, and 20.31 for Z-VM7, 21.05±3.96, 5.61, and 21.88 for Z-IeC, 25.85±2.74, 9.93, and 27.15 for Z-VM9, 25.82±4.39, 6.27, and 27.06 for Z-CCK, and 2.96±0.73, 4.11, and 3.28 for Z-IdS. The CTE (×10-6/°C) were 10.80, 7.83, 7.87, 9.86, 9.93, 10.03, and 12.95 for Z, VDα, VM7, IeC, VM9, CCK, and IdS. The bond strength was significantly affected by the CTE difference (p<0.05). The t→m phase transformation related with the CTE difference. CONCLUSIONS: The CTE’s differences induced stress that affected the bond strength. CTE’s compatibility of veneering ceramic to zirconia is crucial for enhancing the bond strength. The CTE difference approximately 0.77-0.87×10-6/°C was recommended. Key words:Bond strength, coefficient of thermal expansion, zirconia. |
format | Online Article Text |
id | pubmed-5923890 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | Medicina Oral S.L. |
record_format | MEDLINE/PubMed |
spelling | pubmed-59238902018-05-02 Role of coefficient of thermal expansion on bond strength of ceramic veneered yttrium-stabilized zirconia Juntavee, Niwut Dangsuwan, Chollada J Clin Exp Dent Research BACKGROUND: Incompatible coefficient of thermal expansion (CTE) is supposed to be a reason for chipping of ceramic veneered zirconia. This study evaluates the effect of veneering ceramic at varied CTE on bond strength to zirconia. MATERIAL AND METHODS: Zirconia disks (Z, Ø 10 mm, 1.0 mm thickness) were prepared from Y-TZP (Cercon®) and sintered at 1350°C for 6 hours. All zirconia disks were veneered with ceramics ((Ø 7.0 mm, 1.5 mm thickness) with varied CTE including VITADur® alpha (VDα), VITAVM®7 (VM7), VITAVM®9 (VM9), Cercon® ceramkiss (CCK), IPSe.max® ceram (IeC), and IPS dSIGN® (IdS) (n=15). The specimens were thermo-cycled (5-55 °C, 500 cycles) prior to determine the shear bond strength on a universal testing machine. The veneering ceramic and zirconia rods (Ø 4 mm, 30 mm length) were prepared for CTE evaluation. ANOVA and Tukey’s multiple comparisons were used to determine the statistically significant difference (α=0.05). Weibull analysis was applied for survival probability, Weibull modulus (m), and characteristics strength (σo) of the shear bond. The interfaces were microscopically examined. The phase transformation of zirconia was determined using X ray diffraction. RESULTS: The mean±sd (MPa), m, and σo of bond strength were 20.45±2.32, 9.25, and 21.53 for Z-VDα, 19.47±4.53, 4.66, and 20.31 for Z-VM7, 21.05±3.96, 5.61, and 21.88 for Z-IeC, 25.85±2.74, 9.93, and 27.15 for Z-VM9, 25.82±4.39, 6.27, and 27.06 for Z-CCK, and 2.96±0.73, 4.11, and 3.28 for Z-IdS. The CTE (×10-6/°C) were 10.80, 7.83, 7.87, 9.86, 9.93, 10.03, and 12.95 for Z, VDα, VM7, IeC, VM9, CCK, and IdS. The bond strength was significantly affected by the CTE difference (p<0.05). The t→m phase transformation related with the CTE difference. CONCLUSIONS: The CTE’s differences induced stress that affected the bond strength. CTE’s compatibility of veneering ceramic to zirconia is crucial for enhancing the bond strength. The CTE difference approximately 0.77-0.87×10-6/°C was recommended. Key words:Bond strength, coefficient of thermal expansion, zirconia. Medicina Oral S.L. 2018-03-01 /pmc/articles/PMC5923890/ /pubmed/29721230 http://dx.doi.org/10.4317/jced.54605 Text en Copyright: © 2018 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 Juntavee, Niwut Dangsuwan, Chollada Role of coefficient of thermal expansion on bond strength of ceramic veneered yttrium-stabilized zirconia |
title | Role of coefficient of thermal expansion on bond strength
of ceramic veneered yttrium-stabilized zirconia |
title_full | Role of coefficient of thermal expansion on bond strength
of ceramic veneered yttrium-stabilized zirconia |
title_fullStr | Role of coefficient of thermal expansion on bond strength
of ceramic veneered yttrium-stabilized zirconia |
title_full_unstemmed | Role of coefficient of thermal expansion on bond strength
of ceramic veneered yttrium-stabilized zirconia |
title_short | Role of coefficient of thermal expansion on bond strength
of ceramic veneered yttrium-stabilized zirconia |
title_sort | role of coefficient of thermal expansion on bond strength
of ceramic veneered yttrium-stabilized zirconia |
topic | Research |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5923890/ https://www.ncbi.nlm.nih.gov/pubmed/29721230 http://dx.doi.org/10.4317/jced.54605 |
work_keys_str_mv | AT juntaveeniwut roleofcoefficientofthermalexpansiononbondstrengthofceramicveneeredyttriumstabilizedzirconia AT dangsuwanchollada roleofcoefficientofthermalexpansiononbondstrengthofceramicveneeredyttriumstabilizedzirconia |