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首页> 外文期刊>Acta odontologica Scandinavica. >The effect of surface treatment and bonding procedures on the bond strength of silorane composite repairs
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The effect of surface treatment and bonding procedures on the bond strength of silorane composite repairs

机译:表面处理和粘结程序对硅氧烷复合修补物粘结强度的影响

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Objective. The aim of this study was to evaluate the effect of surface treatments and adhesive protocols on the microtensile bond strength of a low-shrinkage composite repair. Materials and methods. Ninety-six blocks of composite resin Filtek LS were prepared using a half-hourglass-shaped silicone matrix. The specimens were storage for 24 h in distilled water and were randomly divided into the experimental (6) and negative control (2) groups (n = 12) according to the surface treatment (diamond bur and aluminum oxide sandblasting) and adhesive protocol (none; Filtek LS adhesive; phosphoric acid + Filtek LS adhesive; and phosphoric acid + silane + Filtek LS adhesive). After the adhesive procedure, the specimens were fixed in an hourglass-shaped silicone matrix and the other half of the specimen was restored. Hourglass shaped specimens (n = 12) were used as positive control (cohesive strength of the resin). The microtensile bonding test was performed at a crosshead speed of 0.5 mm/min. The data were analyzed using ANOVA, Tukey's and Dunnett's tests (alpha = 0.05). Results. The bond strength values were similar for all experimental groups, except the groups without adhesive application. None of the experimental groups presented results similar to the positive control group. Conclusions. The repair of silorane restorations is viable; nevertheless, the different bonding procedures tested were incapable to produce bond strengths similar to the cohesive strength of the material.
机译:目的。这项研究的目的是评估表面处理和胶粘剂方案对低收缩率复合修补剂的微拉伸粘合强度的影响。材料和方法。使用半沙漏形的有机硅基质制备了96个复合树脂Filtek LS嵌段。将标本在蒸馏水中保存24小时,并根据表面处理(金刚石和氧化铝喷砂处理)和粘合方案(无)随机分为实验组(6)和阴性对照组(2)(n = 12)。 ; Filtek LS粘合剂;磷酸+ Filtek LS粘合剂;以及磷酸+硅烷+ Filtek LS粘合剂)。粘合后,将样品固定在沙漏形的硅树脂基质中,然后恢复另一半。沙漏形样品(n = 12)用作阳性对照(树脂的内聚强度)。以0.5mm / min的十字头速度进行微拉伸粘合测试。使用方差分析,Tukey和Dunnett检验(α= 0.05)分析数据。结果。对于所有实验组,粘结强度值均相似,除了不施加粘合剂的组。没有一个实验组的结果与阳性对照组相似。结论修复硅氟烷修复体是可行的;但是,所测试的不同粘合程序无法产生与材料的内聚强度相似的粘合强度。

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