Mechanical Properties of Five Esthetic Ceramic Materials Used for Monolithic Restorations: A Comparative In Vitro Study

IF 2.7 Q1 MATERIALS SCIENCE, CERAMICS
S. Almohammed, Belal Alshorman, L. Abu-Naba’a
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Abstract

Monolithic zirconia and hybrid ceramic restorations have been widely used in the last decade for both anterior and posterior dental restorations. However, their use lacks sufficient scientific evidence in most cases, as the expeditious manufacturing of these versatile ceramic materials exceeds the limits of in vitro and/or in vivo validation. This study aimed to evaluate and compare the mechanical properties (flexural strength, fracture toughness, Vickers hardness, and brittleness index) of three CAD-CAM monolithic multilayer zirconia ceramics (GNX—Ceramill Zolid® Gen-X, ZCP—IPS e.max® ZirCAD, and UPC—Upcera® Esthetic Explore Prime) and one CAD-CAM monolithic multilayer polymer-infiltrated hybrid ceramic (ENM—Vita® Enamic) with a CAD-CAM monolithic lithium disilicate ceramic as a control (EMX —IPS e.max® CAD). A total of 160 discs (GNX = 32, ZCP = 32, UPC = 32, ENM = 32, and EMX = 32) were cut, polished, and fully sintered (except for the ENM). Half of the samples for each group were subjected to hydrothermal aging. Descriptive analysis and ANOVA tests were used to compare the groups. The zirconia groups showed significantly higher mechanical properties than the EMX group for both the non-aged and aged samples (p < 0.05). The ENM group showed the lowest brittleness index, while EMX showed the highest. The mechanical properties of monolithic multilayer zirconia ceramics were generally better than those of monolithic multilayer polymer-infiltrated hybrid ceramic and lithium disilicate ceramic. All groups showed, to some extent, a change in their mechanical properties after aging, with the ENM being the most affected.
五种美学陶瓷材料用于整体修复体的机械性能:体外比较研究
在过去的十年中,整体氧化锆和混合陶瓷修复体被广泛应用于前牙和后牙修复。然而,在大多数情况下,它们的使用缺乏足够的科学证据,因为这些多功能陶瓷材料的快速制造超出了体外和/或体内验证的限制。本研究旨在评估和比较三种CAD- cam整体多层氧化锆陶瓷(GNX-Ceramill Zolid®Gen-X, ZCP-IPS e.max®ZirCAD和UPC-Upcera®美学探索Prime)和一种CAD- cam整体多层聚合物渗透混合陶瓷(ENM-Vita®Enamic)的力学性能(弯曲强度,断裂韧性,维氏硬度和脆性指数),并以CAD- cam整体二硅酸锂陶瓷作为对照(EMX -IPS e.max®CAD)。共160个圆盘(GNX = 32, ZCP = 32, UPC = 32, ENM = 32, EMX = 32)被切割、抛光和完全烧结(ENM除外)。每组各有一半的样品进行水热老化。采用描述性分析和方差分析进行组间比较。氧化锆组和氧化锆组的力学性能均显著高于EMX组(p < 0.05)。ENM组脆性指数最低,EMX组脆性指数最高。整体多层氧化锆陶瓷的力学性能总体优于整体多层聚合物渗透杂化陶瓷和二硅酸锂陶瓷。时效后各组材料的力学性能均有不同程度的变化,其中ENM受影响最大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.00
自引率
7.10%
发文量
66
审稿时长
10 weeks
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