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首页> 外文期刊>Bulletin of Materials Science >Optimization of compressive strength of zirconia based dental composites
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Optimization of compressive strength of zirconia based dental composites

机译:氧化锆基牙科复合材料抗压强度的优化

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摘要

Dental composites are tooth-coloured restorative material used by dentists for various applications. Restoration of a lost tooth structure requires a material having mechanical as well as aesthetic properties similar to that of tooth. This poses challenges to engineers and the dentist alike. Dental composites consist of a matrix and a dispersed phase called filler, which are mainly responsible for its mechanical properties. Most commonly used matrix is bisphenol glycidyl methacrylate (Bis-GMA) and triethylene glycol dimethacrylate (TEGMA). Silica and glass are conventional fillers used in the past. Recently, zirconia is being used due to its improved mechanical properties. A study was conducted to evaluate the contribution of zirconia to the mechanical properties in general and compressive strength in particular. We have attempted to make an experimental dental composite with a conglomerate of nanofillers, namely, zirconia, glass and silica, and optimize this filler volume percentage and obtain an optimum compressive strength for the experimental dental composite.
机译:牙科复合材料是牙医用于各种应用的牙齿色修复材料。丢失牙齿的结构的恢复需要具有与牙齿相似的机械以及美学特性的材料。这对工程师和牙医都构成了挑战。牙科复合材料由基质和称为填料的分散相组成,这主要是由于其机械性能。最常用的基质是双酚甲基丙烯酸缩水甘油酯(Bis-GMA)和三乙二醇二甲基丙烯酸酯(TEGMA)。二氧化硅和玻璃是过去使用的常规填料。最近,由于其改善的机械性能而使用氧化锆。进行了一项研究,以评估氧化锆对机械性能的总体贡献,尤其是抗压强度。我们已经尝试用纳米填料,即氧化锆,玻璃和二氧化硅的聚集体来制备实验性牙科复合材料,并优化该填充剂的体积百分比,并获得用于实验性牙科复合材料的最佳抗压强度。

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