Department of Restorative Dental Sciences, College of Dentistry, King Saud University, Riyadh 11545, Saudi Arabia.
Department of Clinical Dental Sciences, College of Dentistry, Princess Nourah bint Abdulrahman University, Riyadh 11671, Saudi Arabia.
Eur J Prosthodont Restor Dent. 2023 Aug 31;31(3):308-320. doi: 10.1922/EJPRD_2508Alfahed12.
To evaluate the translucency and color difference of the individual layers of two multi-layered zirconia materials at different sintering temperatures and to compare them with lithium disilicate.
Multi-layered zirconia systems with four distinct layers were selected for this study: DD cube ONE ML (4Y-TZP), DD cubeX2 ML (5Y-TZP); and compared with IPS e.max CAD HT (LS2). Plate-shaped A2-shade specimens were obtained from LS2 and individual layers of both zirconia materials. Individual layers were then divided equally into three different sintering temperatures:1300°C, 1450°C, and 1600°C. The TP and ΔE were determined by a spectrophotometer. SEM images were taken. Data was analyzed using SPSS 24.0 software with a p-value ⟨0.05.
A significant difference was found in TP and ΔE values amongst all types of ceramic materials. Different sintering temperatures yielded distinct TP and ΔE values when both zirconia materials were tested and compared with LS2. Finally, TP and ΔE values were different amongst the zirconia layers.
Sintering temperature, type of ceramic material and different zirconia layers significantly affected the optical properties.
Multi-layered zirconia materials possess a unique gradient effect that could efficiently enhance the esthetics of monolithic zirconia restorations. However, the sintering condition should be optimized.
评估两种多层氧化锆材料在不同烧结温度下各层的透光率和色差,并与锂硅石进行比较。
本研究选择具有四层不同层的多层氧化锆系统:DD cube ONE ML(4Y-TZP)、DD cubeX2 ML(5Y-TZP);并与 IPS e.max CAD HT(LS2)进行比较。从 LS2 和两种氧化锆材料中获得 A2 色调板状试件。然后将各层均匀分为三种不同的烧结温度:1300°C、1450°C 和 1600°C。用分光光度计测定 TP 和ΔE。拍摄 SEM 图像。使用 SPSS 24.0 软件对数据进行分析,p 值 ⟨0.05。
所有类型的陶瓷材料的 TP 和ΔE 值均存在显著差异。当测试两种氧化锆材料并与 LS2 进行比较时,不同的烧结温度会产生不同的 TP 和ΔE 值。最后,氧化锆层之间的 TP 和ΔE 值不同。
烧结温度、陶瓷材料类型和不同氧化锆层显著影响光学性能。
多层氧化锆材料具有独特的梯度效果,可以有效地提高整体氧化锆修复体的美观度。然而,烧结条件应进行优化。