Literature DB >> 21536324

Effect of the microstructure on the lifetime of dental ceramics.

Márcia Borba1, Maico D de Araújo, Karen A Fukushima, Humberto N Yoshimura, Paulo F Cesar, Jason A Griggs, Alvaro Della Bona.   

Abstract

OBJECTIVES: To evaluate the effect of the microstructure on the Weibull and slow crack growth (SCG) parameters and on the lifetime of three ceramics used as framework materials for fixed partial dentures (FPDs) (YZ - Vita In-Ceram YZ; IZ - Vita In-Ceram Zirconia; AL - Vita In-Ceram AL) and of two veneering porcelains (VM7 and VM9).
METHODS: Bar-shaped specimens were fabricated according to the manufacturer's instructions. Specimens were tested in three-point flexure in 37°C artificial saliva. Weibull analysis (n=30) and a constant stress-rate test (n=10) were used to determine the Weibull modulus (m) and SCG coefficient (n), respectively. Microstructural and fractographic analyzes were performed using SEM. ANOVA and Tukey's test (α=0.05) were used to statistically analyze data obtained with both microstructural and fractographic analyzes.
RESULTS: YZ and AL presented high crystalline content and low porosity (0.1-0.2%). YZ had the highest characteristic strength (σ(0)) value (911MPa) followed by AL (488MPa) and IZ (423MPa). Lower σ(0) values were observed for the porcelains (68-75MPa). Except for IZ and VM7, m values were similar among the ceramic materials. Higher n values were found for YZ (76) and AL (72), followed by IZ (54) and the veneering materials (36-44). Lifetime predictions showed that YZ was the material with the best mechanical performance. The size of the critical flaw was similar among the framework materials (34-48μm) and among the porcelains (75-86μm). SIGNIFICANCE: The microstructure influenced the mechanical and SCG behavior of the studied materials and, consequently, the lifetime predictions.
Copyright © 2011 Academy of Dental Materials. Published by Elsevier Ltd. All rights reserved.

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Year:  2011        PMID: 21536324      PMCID: PMC3107994          DOI: 10.1016/j.dental.2011.04.003

Source DB:  PubMed          Journal:  Dent Mater        ISSN: 0109-5641            Impact factor:   5.304


  30 in total

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4.  Determining the slow crack growth parameter and Weibull two-parameter estimates of bilaminate disks by constant displacement-rate flexural testing.

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5.  Weibull analysis and flexural strength of hot-pressed core and veneered ceramic structures.

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6.  Three-year clinical evaluation of In-Ceram Zirconia posterior FPDs.

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  10 in total

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3.  Step-stress analysis for predicting dental ceramic reliability.

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4.  Effect of ceramic infrastructure on the failure behavior and stress distribution of fixed partial dentures.

Authors:  Márcia Borba; Yuanyuan Duan; Jason A Griggs; Paulo F Cesar; Álvaro Della Bona
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5.  Effect of active application of self-etching ceramic primer on the long-term bond strength of different dental CAD/CAM materials.

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Journal:  J Clin Exp Dent       Date:  2021-11-01

6.  Influence of piston material on the fatigue behavior of a glass-ceramic.

Authors:  Katia R Weber; Daniel E Meneghetti; Paula Benetti; Alvaro Della Bona; Jason A Griggs; Márcia Borba
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7.  Fatigue loading and R-curve behavior of a dental glass-ceramic with multiple flaw distributions.

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8.  Damage sensitivity of dental zirconias to simulated occlusal contact.

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9.  Modulation of Lithium Disilicate Translucency through Heat Treatment.

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Review 10.  Zirconia as a Dental Biomaterial.

Authors:  Alvaro Della Bona; Oscar E Pecho; Rodrigo Alessandretti
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  10 in total

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