Drummond J L
Department of Restorative Dentistry, University of Illinois at Chicago, Chicago, IL 60612-7212, USA.
J Dent Res. 2008 Aug;87(8):710-9. doi: 10.1177/154405910808700802.
The intent of this article is to review the numerous factors that affect the mechanical properties of particle- or fiber-filler-containing indirect dental resin composite materials. The focus will be on the effects of degradation due to aging in different media, mainly water and water and ethanol, cyclic loading, and mixed-mode loading on flexure strength and fracture toughness. Several selected papers will be examined in detail with respect to mixed and cyclic loading, and 3D tomography with multi-axial compression specimens. The main cause of failure, for most dental resin composites, is the breakdown of the resin matrix and/or the interface between the filler and the resin matrix. In clinical studies, it appears that failure in the first 5 years is a restoration issue (technique or material selection); after that time period, failure most often results from secondary decay.
本文旨在综述影响含颗粒或纤维填料的间接牙科树脂复合材料力学性能的众多因素。重点将放在不同介质(主要是水、水和乙醇)中的老化降解、循环加载以及混合模式加载对弯曲强度和断裂韧性的影响。将详细研究几篇关于混合和循环加载以及多轴压缩试样的三维断层扫描的选定论文。对于大多数牙科树脂复合材料来说,失效的主要原因是树脂基体和/或填料与树脂基体之间界面的破坏。在临床研究中,似乎前5年的失效是修复问题(技术或材料选择);在那段时间之后,失效最常由继发龋引起。