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Nonlinear finite element modeling of dental composite polymerization behavior.

机译:牙科复合材料聚合行为的非线性有限元建模。

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摘要

Polymerization shrinkage has been one of the primary shortcomings preventing the use of resin composites as a universal dental restorative material. This shrinkage of the bonded restoration causes residual stresses in the composite which in turn are transferred to the adhesive interface. The deleterious effects of this stress environment include compromise of the interface itself and the decrease in the mechanical properties of the cured composite. Novel materials which claim to produce less shrinkage have been presented as a new class of restorative materials that could reduce the effects of this problem. One difficulty in assessing the actual in vivo benefits of these new materials is the fact that there is currently no direct way to measure the stress environment at the composite/tooth clinical interface. Computer modeling using finite element analysis (FEA) could provide helpful information regarding the clinical stress performance of dental composites. The purpose of this study was to develop a model that accurately simulates the nonlinear polymerization behavior of light-cured dental composites using a commercial FEA program, which could be accessible for future research.; Two phases were needed to accomplish this purpose. First, a data collection phase included volumetric shrinkage, shrinkage stress, tooth analog strain, and dynamic mechanical analysis experiments. Three composites, a standard methacrylate(Z250) and two experimental low stress epoxy-based composites (oxirane and silorane), were tested. The experimental results revealed an intriguing range of polymerization behavior exhibited by the three composites, indicating that the development of a low stress composite is possible. The information gathered from this phase supplied the necessary material input for the computer modeling, and provided empirical validation data for the model solutions. In the second modeling phase, an FEA approach based on a elastic/viscoplastic material model was used to develop models which included the nonlinear constitutive relationships involved in the polymerization behavior of the dental composites.; The approach was validated by modeling the curing behavior of the three different composites in the context of two different experiments. Good agreement between model and experimental values indicated that this approach was successful in simulating the polymerization behavior these composites.
机译:聚合收缩率一直是阻止将树脂复合材料用作通用牙科修复材料的主要缺点之一。粘结修复体的这种收缩导致复合材料中的残余应力,这些残余应力又转移到粘合剂界面上。该应力环境的有害影响包括界面本身的损害以及固化的复合材料的机械性能的降低。已经提出了声称产生较少收缩的新型材料作为可以减少该问题影响的新型修复材料。评估这些新材料的实际体内益处的一个困难是以下事实:目前尚无直接方法可测量复合材料/牙齿临床界面的应力环境。使用有限元分析(FEA)的计算机建模可以提供有关牙科复合材料临床应力性能的有用信息。这项研究的目的是开发一种模型,该模型可以使用商业FEA程序准确地模拟光固化牙科复合材料的非线性聚合行为,该模型可用于将来的研究。需要两个阶段来实现此目的。首先,数据收集阶段包括体积收缩,收缩应力,牙齿模拟应变和动态力学分析实验。测试了三种复合材料,即标准的甲基丙烯酸酯(Z250)和两种实验性的低应力环氧基复合材料(环氧乙烷和硅烷)。实验结果表明,这三种复合材料表现出令人感兴趣的聚合行为范围,表明低应力复合材料的开发是可能的。从此阶段收集的信息为计算机建模提供了必要的材料输入,并为模型解决方案提供了经验验证数据。在第二个建模阶段,使用基于弹性/粘塑性材料模型的有限元分析方法来开发模型,该模型包括涉及牙科复合材料聚合行为的非线性本构关系。通过在两个不同的实验中对三种不同复合材料的固化行为进行建模,验证了该方法的有效性。模型值和实验值之间的良好一致性表明,该方法成功地模拟了这些复合材料的聚合行为。

著录项

  • 作者

    Laughlin, Gayle A.;

  • 作者单位

    University of Missouri - Kansas City.;

  • 授予单位 University of Missouri - Kansas City.;
  • 学科 Health Sciences Dentistry.; Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 132 p.
  • 总页数 132
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 口腔科学;工程材料学;
  • 关键词

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