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Repair Bond Strength of Aged Resin Composite after Different Surface and Bonding Treatments

机译:不同表面和粘接处理后老化树脂复合材料的粘接强度

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The aim of this study was to compare the effect of different mechanical surface treatments and chemical bonding protocols on the tensile bond strength (TBS) of aged composite. Bar specimens were produced using a nanohybrid resin composite and aged in distilled water for 30 days. Different surface treatments (diamond bur, phosphoric acid, silane, and sandblasting with Al 2 O 3 or CoJet Sand), as well as bonding protocols (Primer/Adhesive) were used prior to application of the repair composite. TBS of the specimens was measured and the results were analyzed using analysis of variance (ANOVA) and the Student–Newman–Keuls test (α = 0.05). Mechanically treated surfaces were characterized under SEM and by profilometry. The effect of water aging on the degree of conversion was measured by means of FTIR-ATR spectroscopy. An important increase in the degree of conversion was observed after aging. No significant differences in TBS were observed among the mechanical surface treatments, despite variations in surface roughness profiles. Phosphoric acid etching significantly improved repair bond strength values. The cohesive TBS of the material was only reached using resin bonding agents. Application of an intermediate bonding system plays a key role in achieving reliable repair bond strengths, whereas the kind of mechanical surface treatment appears to play a secondary role.
机译:这项研究的目的是比较不同的机械表面处理和化学粘合方案对老化复合材料的拉伸粘合强度(TBS)的影响。使用纳米混合树脂复合材料生产条形样品,并在蒸馏水中老化30天。在使用修补复合材料之前,先进行了不同的表面处理(金刚石钻头,磷酸,硅烷和用Al 2 O 3或CoJet Sand喷砂处理)以及粘结方案(Primer / Adhesive)。测量样品的TBS,并使用方差分析(ANOVA)和Student-Newman-Keuls检验(α= 0.05)对结果进行分析。机械处理过的表面在SEM和轮廓仪下表征。通过FTIR-ATR光谱法测量水老化对转化度的影响。老化后观察到转化度的重要增加。尽管表面粗糙度轮廓有所不同,但在机械表面处理之间未观察到TBS的显着差异。磷酸蚀刻可显着改善修复结合强度值。仅使用树脂粘合剂才能达到材料的内聚性TBS。中间粘结系统的应用在获得可靠的修复粘结强度方面起着关键作用,而机械表面处理的种类似乎起着次要作用。

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