首页> 外文会议>ASME 2nd Multifunctional Nanaocomposites and Nanomaterials and Nanomaterials Conference: Design and Modeling of Nanomaterials... >CHARACTERIZATION OF NANO-AND MICRO-FILLED RESIN COMPOSITES USED AS DENTALRESTORATIVE MATERIALS
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CHARACTERIZATION OF NANO-AND MICRO-FILLED RESIN COMPOSITES USED AS DENTALRESTORATIVE MATERIALS

机译:用作牙科修复材料的纳米和微填充树脂复合材料的表征

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Adhesively-bonded resin composites have the advantage of conserving sound tooth structure with the potential for tooth reinforcement, while at the same time providing an aesthetically acceptable restoration. However, no composite material has been able to meet both the functional needs of posterior restorations and the superior aesthetics required for anterior restoration. In an attempt to develop a dental resin composite that had the mechanical strength of hybrid composite materials and the superior polish and gloss retention associated with microfilled materials, nanofilled resin composites have been introduced in the market. Although nanofillers are the most popular fillers utilized in current visible light-activated dental resin composites and are claimed to be the solution for the most challenging material limitations as a universal restorative material, the mechanisms by which these fillers influence the resin composite properties are not well explained. In this study, some physical and mechanical properties of a nanofilled resin composite containing 60 vol. % zirconia and silica fillers were evaluated and compared to those of a microhybrid resin composite of the same composition. The nanofilled resin composite was found to have equivalent polymerization shrinkage and depth of cure to the microhybrid material but a slightly lower degree of conversion and density. Regarding mechanical behaviour, although the nanocomposite was found to exhibit significantly higher wear resistance, and equivalent flexural strength, its indentation modulus and nanohardness were slightly lower. Field-emission scanning electron microscopy (FE-SEM) analysis was conducted in order to evaluate the microstructure and to obtain a better understanding of the effect of the nanofillers on the behaviour of the nanocomposite.
机译:胶粘树脂复合材料的优点是可以保持牙齿良好的结构,并具有增强牙齿的潜力,同时又可以提供美观的修复体。然而,没有复合材料能够同时满足后牙修复的功能需求和前牙修复所需的出色美学要求。为了开发具有杂化复合材料的机械强度以及与微填充材料相关的优异的抛光和光泽保持性的牙科树脂复合材料,将纳米填充的树脂复合材料引入市场。尽管纳米填料是当前可见光活化牙科树脂复合材料中使用最广泛的填料,并且被认为是作为通用修复材料的最具挑战性的材料局限性的解决方案,但这些填料影响树脂复合材料性能的机理尚不完善。解释。在这项研究中,包含60 vol。%纳米填充树脂复合材料的一些物理和机械性能。评估了%的氧化锆和二氧化硅填料,并将其与相同组成的微混合树脂复合材料的那些进行比较。发现纳米填充树脂复合材料具有与微混合材料相当的聚合收缩率和固化深度,但是转化率和密度稍低。关于机械性能,尽管发现纳米复合材料显示出显着更高的耐磨性和等效弯曲强度,但其压痕模量和纳米硬度略低。进行场发射扫描电子显微镜(FE-SEM)分析,以评估其微观结构并更好地了解纳米填料对纳米复合材料行为的影响。

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