Dental Materials
Volume 25, Issue 4 , Pages 419-423, April 2009

Impact of thermal misfit on shear strength of veneering ceramic/zirconia composites

Clinic for Fixed and Removable Prosthodontics and Dental Materials Science, Center for Dental and Oral Medicine, University of Zurich, Plattenstrasse 11, CH-8032 Zurich, Switzerland

Received 27 March 2008; received in revised form 28 July 2008; accepted 25 September 2008.

Abstract 

Objectives

Thermal misfit is discussed as one reason for chipping of veneered zirconia restorations. The aim of the investigation was to assess the effect of thermal misfit on the shear strength of zirconia/veneering ceramic composites.

Methods

Shear strengths of 12 different veneering ceramic/zirconia composites were measured (n=10). The veneering ceramics were fired onto polished Y-TZP. In order to create a strong thermal mismatch, one of the veneering ceramics was intended for use on alumina and one for the metal–ceramic technique. The glass transition temperatures of the veneering ceramics and the coefficients of thermal expansion of all ceramics were measured (n=6). Statistical analysis was performed with one-way ANOVA and a post hoc Bonferroni test (p<0.05).

Results

Shear strength ranged from 21.9±6.2 to 31.0±7.1MPa. The ceramic for the metal–ceramic technique showed spontaneous debonding. The differences in the coefficients of thermal expansion of core and veneer (Δα) were calculated. In addition the differences between glass transition temperatures of the veneering ceramics and room temperature (ΔT) as the effective temperature range for stress formation were calculated. Highest shear strength was observed when ΔαΔT1000×10−6.

Conclusions

Thermal expansion and glass transition temperature of the veneering ceramic have an impact on the shear strength of veneer/zirconia composites.

Keywords: Zirconia, Veneering ceramic, Shear strength, Shear test, Thermal compatibility

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PII: S0109-5641(08)00234-0

doi:10.1016/j.dental.2008.09.003

Dental Materials
Volume 25, Issue 4 , Pages 419-423, April 2009