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不同饰面陶瓷与氧化锆基底之间的热不匹配对单冠体外抗折载荷的影响。

Effect of thermal misfit between different veneering ceramics and zirconia frameworks on in vitro fracture load of single crowns.

作者信息

Fischer Jens, Stawarczyk Bogna, Tomic Milos, Strub Jörg R, Hämmerle Christoph H F

机构信息

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.

出版信息

Dent Mater J. 2007 Nov;26(6):766-72. doi: 10.4012/dmj.26.766.

Abstract

Thermal misfit is deemed as one reason for the chipping of veneered zirconia restorations. Aim of the present study was to assess the effect of thermal misfit on the fracture load of veneered zirconia frameworks and to evaluate the applicability of a universal veneering ceramic for both zirconia and titanium frameworks. Fracture loads of zirconia and titanium frameworks veneered with different ceramics were measured. Differences in the thermal expansion coefficients of core and veneer (Delta alpha), as well as differences between glass transition temperatures of the veneering ceramics and room temperature (Delta T)--which is considered as the effective temperature range for stress formation, were determined. In the zirconia group, fracture load ranged from 818.0 +/- 127.2 to 935.2 +/- 186.3 N without significant differences (Student's t-test, p < 0.05). Moreover, zirconia and titanium crowns veneered with the universal veneering ceramic revealed high fracture load. Results also showed a correlation to the product Delta alpha x Delta T, such that if 185 x 10(-6) < Delta alpha x Delta T < 1120 x 10(-6), a veneering ceramic adapted for titanium might be likewise applicable for zirconia.

摘要

热不匹配被认为是饰面氧化锆修复体崩瓷的一个原因。本研究的目的是评估热不匹配对饰面氧化锆框架断裂载荷的影响,并评估一种通用饰面陶瓷对氧化锆和钛框架的适用性。测量了用不同陶瓷饰面的氧化锆和钛框架的断裂载荷。确定了内核和饰面的热膨胀系数差异(Δα),以及饰面陶瓷的玻璃化转变温度与室温之间的差异(ΔT)——这被视为应力形成的有效温度范围。在氧化锆组中,断裂载荷范围为818.0±127.2至935.2±186.3 N,无显著差异(学生t检验,p<0.05)。此外,用通用饰面陶瓷饰面的氧化锆和钛冠显示出高断裂载荷。结果还显示与乘积Δα×ΔT相关,即如果185×10⁻⁶<Δα×ΔT<1120×10⁻⁶,则适用于钛的饰面陶瓷可能同样适用于氧化锆。

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