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Effect of material properties on stresses at the restoration-dentin interface of composite restorations during polymerization

机译:聚合过程中材料性能对复合修复体修复体-牙本质界面应力的影响

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Background. Numerous analyses for the shrinkage stress in the adhesive resin-based composite restorations mostly rely on numerical models. However, various finite element studies have inherent difficulties and inconsistencies associated with the use of different anatomy (tooth and restoration), boundary conditions (root and interfaces) and shrinkage models. As a consequence many numerical results remain inconclusive. Objectiue. The objective of this paper is to develop a simplified analytical model of shrinkage stress and investigate effects of material properties of the restorative material, size of the restoration and volumetric shrinkage on the magnitude of the shrinkage stress in the vicinity of the dental-restoration interface. Methods. The model is based on the following assumptions. The geometry is axisymmetric; all materials are linear-elastic; and the polymerization of the restoration material results in uniform volume shrinkage. An application of compatibility conditions leads to the system of five linear algebraic equations to five unknown variables, which can be easily resolved using standard techniques. Results. An explicit equation for the tensile stress at the interface was obtained. It was shown that higher Young's modulus, Poisson's ratio and volume shrinkage of the restorative material normally lead to larger tensile stress at the interface, which increases the risk of debonding. The results obtained based in this work, in general, are in a good agreement with published results of finite element studies. Significance. The model allows comparison of different adhesive restorative materials with respect to the fracture risk of the interface induced by the development of the shrinkage stress at the restoration-dentine interface during polymerization. The model can be used to validate more sophisticated computational models as well as to conduct various optimization studies and preliminary assessments of fracture risk.
机译:背景。对基于粘合树脂的复合修复体的收缩应力的许多分析大多依赖于数值模型。然而,各种有限元研究存在固有的困难和与使用不同解剖结构(牙齿和修复体),边界条件(牙根和界面)和收缩模型相关的矛盾。结果,许多数值结果仍然没有定论。反对本文的目的是建立一种简化的收缩应力分析模型,并研究修复材料的材料性能,修复体的大小和体积收缩对牙齿-修复界面附近收缩应力大小的影响。方法。该模型基于以下假设。几何形状是轴对称的。所有材料都是线弹性的;修复材料的聚合导致均匀的体积收缩。相容条件的应用导致由五个线性代数方程组到五个未知变量的系统,可以使用标准技术轻松解决。结果。获得了界面张力的显式方程。结果表明,修复材料较高的杨氏模量,泊松比和体积收缩率通常会导致界面处的拉应力更大,从而增加脱胶的风险。通常,基于这项工作获得的结果与有限元研究的已发表结果非常吻合。意义。该模型可以针对聚合过程中修复体-牙本质界面上的收缩应力的发展所引起的界面断裂风险,比较不同的粘合剂修复材料。该模型可用于验证更复杂的计算模型以及进行各种优化研究和断裂风险的初步评估。

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