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Comparative analysis of the shrinkage stress of composite resins

机译:复合树脂收缩应力的比较分析

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The aim of this study was to compare the shrinkage stress of composite resins by three methods. In the first method, composites were inserted between two stainless steel plates. One of the plates was connected to a 20 kgf load cell of a universal testing machine (EMIC-DL-500). In the second method, disk-shaped cavities were prepared in 2-mm-thick Teflon molds and filled with the different composites. Gaps between the composites and molds formed after polymerization were evaluated microscopically. In the third method, the wall-to-wall shrinkage stress of the resins that were placed in bovine dentin cavities was evaluated. The gaps were measured microscopically. Data were analyzed by one-way ANOVA and Tukey's test (a=0.05). The obtained contraction forces were: Grandio = 12.18 ± 0.428N; Filtek Z 250 = 11.80 ± 0.760N; Filtek Supreme = 11.80 ± 0.707 N; and Admira = 11.89 ± 0.647 N. The gaps obtained between composites and Teflon molds were: Filtek Z 250 = 0.51 ± 0.0357%; Filtek Supreme = 0.36 ± 0.0438%; Admira = 0.25 ± 0.0346% and Grandio = 0.16 ± 0.008%. The gaps obtained in wall-to-wall contraction were: Filtek Z 250 = 11.33 ± 2.160 μm; Filtek Supreme = 10.66 ± 1.211μm; Admira = 11.16 ± 2.041 μm and Grandio = 10.50 ± 1.224 μm. There were no significant differences among the composite resins obtained with the first (shrinkage stress generated during polymerization) and third method (wall-to-wall shrinkage). The composite resins obtained with the second method (Teflon method) differed significantly regarding gap formation.
机译:这项研究的目的是通过三种方法比较复合树脂的收缩应力。在第一种方法中,将复合材料插入两个不锈钢板之间。将一块板连接到通用测试机(EMIC-DL-500)的20 kgf称重传感器上。在第二种方法中,在2毫米厚的特氟隆模具中准备了盘形腔体,并填充了不同的复合材料。用显微镜评估复合材料和聚合后形成的模具之间的间隙。在第三种方法中,评估了放置在牛牙本质腔中的树脂的壁间收缩应力。间隙用显微镜测量。数据通过单因素方差分析和Tukey检验(a = 0.05)进行分析。获得的收缩力为:Grandio = 12.18±0.428N; Filtek Z 250 = 11.80±0.760N; Filtek Supreme = 11.80±0.707牛;复合材料和特氟隆模具之间的间隙为:Filtek Z 250 = 0.51±0.0357%; Admira = 11.89±0.647N。 Filtek Supreme = 0.36±0.0438%; Admira = 0.25±0.0346%,Grandio = 0.16±0.008%。壁对壁收缩的间隙为:Filtek Z 250 = 11.33±2.160μm; Filtek Supreme = 10.66±1.211微米; Admira = 11.16±2.041μm,Grandio = 10.50±1.224μm。第一种方法(聚合过程中产生的收缩应力)和第三种方法(壁对壁的收缩率)获得的复合树脂之间没有显着差异。通过第二种方法(特氟隆法)获得的复合树脂在间隙形成方面有显着差异。

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