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Influence of Heat Treatment and Veneering on the Storage Modulus and Surface of Zirconia Ceramic

OBJECTIVES: Glass-ceramic veneered zirconia is used for the application as fixed partial dentures. The aim of this investigation was to evaluate whether the heat treatment during veneering, the application of glass-ceramic for veneering or long term storage has an influence on the storage modulus of...

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Autores principales: Siavikis, Georgius, Behr, Michael, van der Zel, Jef M, Feilzer, Albert J, Rosentritt, Martin
Formato: Texto
Lenguaje:English
Publicado: Dental Investigations Society 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3075987/
https://www.ncbi.nlm.nih.gov/pubmed/21494388
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author Siavikis, Georgius
Behr, Michael
van der Zel, Jef M
Feilzer, Albert J
Rosentritt, Martin
author_facet Siavikis, Georgius
Behr, Michael
van der Zel, Jef M
Feilzer, Albert J
Rosentritt, Martin
author_sort Siavikis, Georgius
collection PubMed
description OBJECTIVES: Glass-ceramic veneered zirconia is used for the application as fixed partial dentures. The aim of this investigation was to evaluate whether the heat treatment during veneering, the application of glass-ceramic for veneering or long term storage has an influence on the storage modulus of zirconia. METHODS: Zirconia bars (Cercon, DeguDent, G; 0.5x2x20 mm) were fabricated and treated according to veneering conditions. Besides heating regimes between 680°C and 1000°C (liner bake and annealing), sandblasting (Al(2)O(3)) or steam cleaning were used. The bars were investigated after 90 days storage in water and acid. For investigating the influence of veneering, the bars were veneered in press- or layer technique. Dynamic mechanical analysis (DMA) in a three-point-bending design was performed to determine the storage modulus between 25°C and 200°C at a frequency of 1.66 Hz. All specimens were loaded on top and bottom (treatment on pressure or tensile stress side). Scanning electron microscopy (SEM) was used for evaluating the superficial changes of the zirconia surface due to treatment. Statistical analysis was performed using Mann Whitney U-test (α=0.05). RESULTS: Sintered zirconia provided a storage modulus E’ of 215 (203/219) GPa and tan δ of 0.04 at 110°C. A 10%-decrease of E’ was found up to 180°C. The superficial appearance changed due to heating regime. Sandblasting reduced E’ to 213 GPa, heating influenced E’ between 205 GPa (liner bake 1) and 222 GPa (dentin bake 1). Steam cleaning, annealing and storage changed E’ between 4 GPa and 22 GPa, depending on the side of loading. After veneering, strong E’-reduction was found down to 84 GPa and 125 GPa. CONCLUSIONS: Veneering of zirconia with glass-ceramic in contrast to heat treating during veneering procedure had a strong influence on the modulus. The application of the glass-ceramic caused a stronger decrease of the storage modulus.
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spelling pubmed-30759872011-04-14 Influence of Heat Treatment and Veneering on the Storage Modulus and Surface of Zirconia Ceramic Siavikis, Georgius Behr, Michael van der Zel, Jef M Feilzer, Albert J Rosentritt, Martin Eur J Dent Original Articles OBJECTIVES: Glass-ceramic veneered zirconia is used for the application as fixed partial dentures. The aim of this investigation was to evaluate whether the heat treatment during veneering, the application of glass-ceramic for veneering or long term storage has an influence on the storage modulus of zirconia. METHODS: Zirconia bars (Cercon, DeguDent, G; 0.5x2x20 mm) were fabricated and treated according to veneering conditions. Besides heating regimes between 680°C and 1000°C (liner bake and annealing), sandblasting (Al(2)O(3)) or steam cleaning were used. The bars were investigated after 90 days storage in water and acid. For investigating the influence of veneering, the bars were veneered in press- or layer technique. Dynamic mechanical analysis (DMA) in a three-point-bending design was performed to determine the storage modulus between 25°C and 200°C at a frequency of 1.66 Hz. All specimens were loaded on top and bottom (treatment on pressure or tensile stress side). Scanning electron microscopy (SEM) was used for evaluating the superficial changes of the zirconia surface due to treatment. Statistical analysis was performed using Mann Whitney U-test (α=0.05). RESULTS: Sintered zirconia provided a storage modulus E’ of 215 (203/219) GPa and tan δ of 0.04 at 110°C. A 10%-decrease of E’ was found up to 180°C. The superficial appearance changed due to heating regime. Sandblasting reduced E’ to 213 GPa, heating influenced E’ between 205 GPa (liner bake 1) and 222 GPa (dentin bake 1). Steam cleaning, annealing and storage changed E’ between 4 GPa and 22 GPa, depending on the side of loading. After veneering, strong E’-reduction was found down to 84 GPa and 125 GPa. CONCLUSIONS: Veneering of zirconia with glass-ceramic in contrast to heat treating during veneering procedure had a strong influence on the modulus. The application of the glass-ceramic caused a stronger decrease of the storage modulus. Dental Investigations Society 2011-04 /pmc/articles/PMC3075987/ /pubmed/21494388 Text en Copyright 2011 European Journal of Dentistry. All rights reserved.
spellingShingle Original Articles
Siavikis, Georgius
Behr, Michael
van der Zel, Jef M
Feilzer, Albert J
Rosentritt, Martin
Influence of Heat Treatment and Veneering on the Storage Modulus and Surface of Zirconia Ceramic
title Influence of Heat Treatment and Veneering on the Storage Modulus and Surface of Zirconia Ceramic
title_full Influence of Heat Treatment and Veneering on the Storage Modulus and Surface of Zirconia Ceramic
title_fullStr Influence of Heat Treatment and Veneering on the Storage Modulus and Surface of Zirconia Ceramic
title_full_unstemmed Influence of Heat Treatment and Veneering on the Storage Modulus and Surface of Zirconia Ceramic
title_short Influence of Heat Treatment and Veneering on the Storage Modulus and Surface of Zirconia Ceramic
title_sort influence of heat treatment and veneering on the storage modulus and surface of zirconia ceramic
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3075987/
https://www.ncbi.nlm.nih.gov/pubmed/21494388
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