Literature DB >> 12901992

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

Alvaro Della Bona1, Kenneth J Anusavice, Paul H DeHoff.   

Abstract

OBJECTIVE: To test the hypothesis that the Weibull moduli of single- and multilayer ceramics are controlled primarily by the structural reliability of the core ceramic.Methods. Seven groups of 20 bar specimens (25 x 4 x 1.2 mm) were made from the following materials: (1) IPS Empress--a hot-pressed (HP) leucite-based core ceramic; (2) IPS Empress2--a HP lithia-based core ceramic; (3 and 7) Evision--a HP lithia-based core ceramic (ES); (4) IPS Empress2 body--a glass veneer; (5) ES (1.1 mm thick) plus a glaze layer (0.1 mm); and (6) ES (0.8 mm thick) plus veneer (0.3 mm) and glaze (0.1 mm). Each specimen was subjected to four-point flexure loading at a cross-head speed of 0.5 mm/min while immersed in distilled water at 37 degrees C, except for Group 7 that was tested in a dry environment. Failure loads were recorded and the fracture surfaces were examined using SEM. ANOVA and Duncan's multiple range test were used for statistical analysis.
RESULTS: No significant differences were found between the mean flexural strength values of Groups 2, 3, 5, and 6 or between Groups 1 and 4 (p>0.05). However, significant differences were found for dry (Group 7) and wet (Groups 1-6) conditions. Glazing had no significant effect on the flexural strength or Weibull modulus. The strength and Weibull modulus of the ES ceramic were similar to those of Groups 5 and 6. SIGNIFICANCE: The structural reliability of veneered core ceramic is controlled primarily by that of the core ceramic.

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Year:  2003        PMID: 12901992     DOI: 10.1016/s0109-5641(03)00010-1

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


  30 in total

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3.  Strength and fracture origins of a feldspathic porcelain.

Authors:  George D Quinn; Kathleen Hoffman; Janet B Quinn
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4.  Apparent interfacial fracture toughness of resin/ceramic systems.

Authors:  A Della Bona; K J Anusavice; J J Mecholsky
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5.  Graded Ultra-Translucent Zirconia (5Y-PSZ) for Strength and Functionalities.

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

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7.  Evaluating the fracture toughness and flexural strength of pressable dental ceramics: an in vitro study.

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8.  Chlorhexidine-modified nanotubes and their effects on the polymerization and bonding performance of a dental adhesive.

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9.  Effect of thermocycling on the flexural strength of porcelain laminate veneers.

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10.  Characterization of glass-infiltrated alumina-based ceramics.

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