首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Optimum selection of nano- and microsized filler for the best combination of physical, mechanical, and wear properties of dental composites
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Optimum selection of nano- and microsized filler for the best combination of physical, mechanical, and wear properties of dental composites

机译:纳米和微米级填料的最佳选择,可实现牙科复合材料的物理,机械和磨损性能的最佳组合

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摘要

This research work examined series of dental composite materials containing nano-fillers (nanoalumina, nanosilica, and nanozirconia) and micro-filler (gypsum) to determine their effect on the physical, mechanical, and wear properties. The proportions of the silanized fillers varied from 0 to 3wt.% in an acrylate based (50wt.% BisGMA, 49wt.% TEGDMA, 0.2wt.% Camphorquinone, and 0.8wt.% ethyl 4-dimethylaminobenzoate by weight) matrix. The physical, chemical, and mechanical tests such as void content, polymerization shrinkage, water sorption, hardness, compressive strength, and flexural strength (FS) were performed. Three body abrasive wear tests were performed in a dental wear simulator machine under varying load, speed, and temperature conditions. The finding of research indicated that the dental composite filled with 3wt.% silanized nanozirconia exhibited maximum hardness, maximum FS, and maximum wear resistance whereas, dental composite filled with 2wt.% silanized nanoalumina filler indicated maximum compressive strength. Gray relational analysis method was applied to rank the dental composite using several performance defining attributes. These results indicated that the best combination of mechanical and wear properties were exhibited by dental composite filled with 3wt.% silanized nanozirconia.
机译:这项研究工作研究了一系列包含纳米填料(纳米氧化铝,纳米二氧化硅和纳米氧化锆)和微填料(石膏)的牙科复合材料,以确定它们对物理,机械和磨损性能的影响。硅烷化填料的比例在基于丙烯酸酯(50重量%的BisGMA,49重量%的TEGDMA,0.2重量%的樟脑醌和0.8重量%的4-二甲基氨基苯甲酸乙酯)的基质中为0至3重量%。进行了物理,化学和机械测试,例如空隙率,聚合收缩率,吸水率,硬度,抗压强度和弯曲强度(FS)。在变化的负载,速度和温度条件下,在牙科磨损模拟器中进行了三项磨料磨损测试。研究发现表明,填充有3wt。%硅烷化纳米氧化锆的牙科复合材料显示出最大的硬度,最大FS和最大耐磨性,而填充有2wt。%硅烷化纳米氧化铝填料的牙科复合材料则显示出最大的抗压强度。应用灰色关联分析法对牙科复合材料进行了性能定义,并对其进行了排序。这些结果表明,填充有3wt。%硅烷化纳米氧化锆的牙科复合材料表现出机械性能和磨损性能的最佳组合。

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