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Influence of finish line in the distribution of stress trough an all ceramic implant-supported crown. A 3D finite element analysis

机译:终点线在全陶瓷种植体支撑冠部应力分布中的影响。三维有限元分析

摘要

Influence of finish line in the distribution of stress through an all ceramic implant-supported crown.udA 3D Finite Element Analysis Porpose. The aim of this study was to evaluate, by finite element analysis (FEA), the influence of finish line on stress distribution and resistance to the loads of a ZrO2 crown and porcelain in implant-supported. Material and methods. The object of this analysis consisted of a fxture, an abutment, a passing screw, a layer of cement, a framework crown, a feldspatic porcelain veneering. The abutment’s marginal design was used in 3 different types of preparation: feather edge, slight chamfer and 50°, each of them was of 1 mm depth over the entire circumference. The ZrO2Y-TZP coping was 0.6 mm thick. Two material matching for the abutment and the framework was used for the simulations: ZrO2 frameworkudand ZrO2 abutment, ZrO2 framework and T abutment. A 600 N axial force distributed over the entire surface of the crown was applied. The numerical simulations with finite elements were used to verify the different distribution of equivalent von Mises stress for three different geometries of abutment and framework.udResults. Slight chamfer on the matching ZrO2 - ZrO2 is the geometry with minimum equivalent stress of von Mises. Even for T abutment and ZrO2 framework slight chamfer is the best configuration to minimize the localized stress. Geometry that has the highest average stress is one with abutment at 50°, we see a downward trend for all three configurations using only zirconium for both components.udConclusions. Finite element analysis. performed for the manifacturing of implant-supported crown, gives exact geometric guide lines about the choice of chamfer preparation, while the analysis of other marginal geometries suggests a possible improved behavior of the mating between ZrO2 abutment and ZrO2 coping. for three different geometries of the abutment and the coping.udKEY WORDS: zirconium dioxide, finite element method, implant supported restoration, marginal design.uddiossido di zirconio, metodo degli elementi finiti, corona implanto supportata, disegno marginale.
机译:终点线对整个陶瓷植入物支持的牙冠应力分布的影响。 udA 3D有限元分析目的。这项研究的目的是通过有限元分析(FEA)评估终点线对植入物支撑的ZrO2牙冠和瓷器的应力分布和抵抗载荷的影响。材料与方法。该分析的对象包括夹具,基台,固定螺钉,水泥层,框架冠,长石瓷饰面。基台的边缘设计用于3种不同类型的准备工作:羽缘,轻微倒角和50°,每一种在整个圆周上的深度均为1 mm。 ZrO2Y-TZP涂层的厚度为0.6毫米。用于基台和框架的两种材料匹配用于模拟:ZrO2框架 udand ZrO2基台,ZrO2框架和T基台。施加了在胎冠整个表面上分布的600 N轴向力。使用有限元的数值模拟来验证基台和框架的三种不同几何形状的等效冯·米塞斯应力的不同分布。 ud结果。匹配的ZrO2上的轻微倒角-ZrO2是具有von Mises最小等效应力的几何形状。即使对于T基台和ZrO2框架,也要进行最小的倒角,以最大程度地减小局部应力。平均应力最高的几何形状是在50°处有一个基台,我们看到所有三种配置都仅使用锆的两个组件均呈下降趋势。 ud结论。有限元分析。为制造植入物支撑的牙冠而进行的研究,给出了关于倒角制备选择的精确几何指导,而对其他边缘几何形状的分析表明,ZrO2基台和ZrO2顶盖之间的配合性能可能得到改善。 ud关键词:二氧化锆,有限元方法,植入物支持的修复,边缘设计。 uddiossido di zirconio,metodo degli elementi finiti,电晕植入物支持体,disegno marginale。

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