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Effect of temperature, curing time, and filler composition on surface microhardness of composite resins

机译:温度,固化时间和填料组合物对复合树脂表面微硬度的影响

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Aim:The aim of this study was to evaluate the microhardness of two composite resins when subjected to three different temperatures and three different light-curing times.Materials and Methods:Two composites were used; Filtek Z250 and Grandio. Three different temperatures (23, 37, and 55oC) were used, utilizing a composite warmer. The heated samples were immediately injected into cylindrical molds (6 mm × 2 mm) and the top surface of the specimens was polymerized for 10, 20, and 40 sec, using a Quartz-Tungsten-Halogen light-curing unit (QTH LCU). Vickers microhardness measurements were performed from both the top and bottom surface of the specimens, following dry storage for 24 hours in the dark. Statistical analysis were performed using one-way analysis of variance (ANOVA) and Tukey post-hoc test at a level of significance of a = 0.05.Results:The results indicated that there was an increase in microhardness as the temperature of the composite was increased for either the top or the bottom surface (P 0.05).Conclusions:Temperature of composites affects their surface microhardness. Also, light-curing time influence microhardness values of the composites tested.
机译:目的:本研究的目的是在进行三种不同温度和三种不同的光固化时间时评估两种复合树脂的显微硬度。材料和方法:使用两种复合材料; Filtek Z250和Grandio。使用三种不同的温度(23,37和55oC),利用复合较高。立即将加热的样品注入圆柱形模具(6mm×2mm),并使用石英 - 卤素 - 卤素光固化单元(QTH LCU)将样品的顶表面聚合10,20和40秒。维氏显微硬度测量从标本的顶部和底表面进行,在黑暗中干燥储存后24小时。使用单向分析(ANOVA)和Tukey-Hoc测试的单向分析进行统计分析,在= 0.05的重要性水平的情况下进行:结果表明,随着复合材料的温度增加,微硬度增加对于顶表面或底表面(P 0.05)。结论:复合材料的温度会影响其表面微硬度。此外,光固化时间影响复合材料的显微硬度值。

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