Department of Restorative Dentistry, University of Passo Fundo, Passo Fundo, RS, Brazil.
Dent Mater. 2011 Jul;27(7):710-21. doi: 10.1016/j.dental.2011.04.003. Epub 2011 May 4.
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).
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.
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).
The microstructure influenced the mechanical and SCG behavior of the studied materials and, consequently, the lifetime predictions.
评估微观结构对威布尔和慢裂纹扩展(SCG)参数以及三种用作固定局部义齿(FPD)框架材料的陶瓷(YZ-Vita In-Ceram YZ;IZ-Vita In-Ceram Zirconia;AL-Vita In-Ceram AL)以及两种饰面瓷(VM7 和 VM9)的寿命的影响。
根据制造商的说明制作棒状试件。在 37°C 人工唾液中进行三点弯曲试验。使用威布尔分析(n=30)和恒应变速率试验(n=10)分别确定威布尔模数(m)和 SCG 系数(n)。使用 SEM 进行微观结构和断口形貌分析。使用方差分析和 Tukey 检验(α=0.05)对微观结构和断口形貌分析获得的数据进行统计分析。
YZ 和 AL 具有高的结晶含量和低的孔隙率(0.1-0.2%)。YZ 具有最高的特征强度(σ(0))值(911MPa),其次是 AL(488MPa)和 IZ(423MPa)。瓷的 σ(0)值较低(68-75MPa)。除了 IZ 和 VM7 之外,陶瓷材料的 m 值相似。YZ(76)和 AL(72)的 n 值较高,其次是 IZ(54)和饰面材料(36-44)。寿命预测表明 YZ 是机械性能最好的材料。框架材料之间(34-48μm)和瓷之间(75-86μm)的临界缺陷尺寸相似。
微观结构影响研究材料的力学和 SCG 行为,从而影响寿命预测。