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首页> 外文期刊>The journal of adhesive dentistry >Microtensile bond strength testing and failure analysis of hybrid and flowable composites.
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Microtensile bond strength testing and failure analysis of hybrid and flowable composites.

机译:混合和可流动复合材料的微拉伸粘结强度测试和破坏分析。

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PURPOSE: Few studies have been performed on the cohesive tensile strength of flowable resin composites and hybrids, or on the coupling strength of flowables to hybrid composites. Thus, the purpose of this study was to measure interfacial microtensile bond strengths between hybrid resin composite and flowable resin composite/compomer. MATERIALS AND METHODS: A polyvinyl siloxane mold was used to fabricate specimens for 9 groups, each consisting of 15 rectangular beams (2 x 2 x 20 mm). Flowable and hybrid resin composites and their paired couplings with each manufacturer's product line were tested. Materials include Heliomolarflow, Revolution, and Dyractflow as representative flowable resin composites and compomer. Heliomolar HB, Prodigy, and Esthet X were selected as representive hybrid resin composites. Resin specimens were cured for a total of 80 s and immersed in water for 7 days. A microspecimen former was used to trim rectangular specimens into specimens with a circular cross section (diameter = 1.0 mm) with a 2 mm gauge length. Specimens were subjected to tensile forces in a passive-gripping space mounted on a Vitrodyne machine. RESULTS: The results are expressed in MPa. Kruskal-Wallis one-way ANOVA on ranks demonstrated significant differences in microtensile bond strength among groups (p < 0.001). CONCLUSION: The cohesive tensile strength of resin composites were material dependent. Flowable and hybrid composites from the same manufacturer have comparable cohesive tensile strengths. The coupling strength of flowable/hybrid combinations were comparable to cohesive strength of the hybrid composites with the exception of Esthet X/Dyractflow, where the coupling was stronger than the cohesive strength of either resin composite alone.
机译:目的:关于流动性树脂复合材料和杂化材料的内聚拉伸强度,或流动性材料与杂化复合材料的结合强度的研究很少。因此,本研究的目的是测量杂化树脂复合材料与流动性树脂复合材料/复合材料之间的界面微拉伸粘结强度。材料和方法:使用聚乙烯基硅氧烷模具制作9组样品,每个样品由15个矩形梁(2 x 2 x 20 mm)组成。测试了可流动的混合树脂复合材料及其与每个制造商产品线的配对偶联。材料包括Heliomolarflow,Revolution和Dyractflow作为代表性的可流动树脂复合材料和复合体。 Heliomolar HB,Prodigy和Esthet X被选为代表性的混合树脂复合材料。树脂标本共固化80 s,浸入水中7天。使用显微样品成型机将矩形样品修整为具有2 mm标距长度的圆形横截面(直径= 1.0 mm)的样品。样品在安装在Vitrodyne机器上的被动抓取空间中承受拉力。结果:结果以MPa表示。等级上的Kruskal-Wallis单向方差分析表明,各组之间的微张力结合强度存在显着差异(p <0.001)。结论:树脂复合材料的内聚拉伸强度取决于材料。来自同一制造商的可流动和混杂复合材料具有相当的内聚拉伸强度。除了Esthet X / Dyractflow以外,可流动/混合混合物的偶联强度与杂化复合材料的内聚强度相当,后者的偶联强度比任何一种树脂复合材料的内聚强度都要强。

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