Stansbury Jeffrey W, Trujillo-Lemon Marianela, Lu Hui, Ding Xingzhe, Lin Yan, Ge Junhao
Department of Restorative Dentistry, University of Colorado Health Sciences Center, Aurora, CO 80045-0508, USA.
Dent Mater. 2005 Jan;21(1):56-67. doi: 10.1016/j.dental.2004.10.006.
The placement of dental composites is complicated by the contraction that accompanies polymerization of these materials. The resulting shrinkage stress that develops during cure of a bonded restoration can induce defects within the composite, the tooth or at the interface resulting in compromised clinical performance and/or esthetics. In light of the substantial efforts devoted to understanding and attempting to control shrinkage stress and strain in dental composite restoratives, this paper offers a perspective on the conversion dependent development of shrinkage and stress. The relationships between polymer property development and the physical evolution of the network structures associated with dental polymers as well as the interrelated kinetics of the photopolymerization reaction process are examined here. Some of the methods used to assess conversion in dental resins and composites are considered. In particular, newly introduced techniques that allow real time analysis of conversion by near-infrared spectroscopy to be coupled directly to simultaneous dynamic measurements of either shrinkage stress or strain are described. The results are compared with reports from the dental materials literature as well as complementary studies in other related fields of polymer science. The complex, nonlinear correlation between conversion, shrinkage and stress are highlighted. A brief review of some of the materials-based approaches designed to minimize polymerization shrinkage and stress is also provided.
牙科复合材料的放置会因这些材料聚合时伴随的收缩而变得复杂。在粘结修复体固化过程中产生的收缩应力会在复合材料、牙齿或界面处引发缺陷,从而导致临床性能和/或美观度受损。鉴于在理解和试图控制牙科复合修复材料中的收缩应力和应变方面投入了大量努力,本文提供了关于收缩和应力的转化率依赖性发展的观点。本文研究了聚合物性能发展与牙科聚合物相关网络结构的物理演变之间的关系,以及光聚合反应过程的相互关联动力学。文中还考虑了一些用于评估牙科树脂和复合材料转化率的方法。特别描述了新引入的技术,这些技术可通过近红外光谱实时分析转化率,并直接与收缩应力或应变的同步动态测量相结合。将结果与牙科材料文献中的报告以及聚合物科学其他相关领域的补充研究进行了比较。突出了转化率、收缩和应力之间复杂的非线性相关性。还简要回顾了一些旨在最小化聚合收缩和应力的基于材料的方法。