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首页> 外文期刊>Journal of Conservative Dentistry >Influence of different resin cements and surface treatments on microshear bond strength of zirconia-based ceramics
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Influence of different resin cements and surface treatments on microshear bond strength of zirconia-based ceramics

机译:不同树脂胶泥和表面处理对氧化锆陶瓷微剪切粘结强度的影响

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Aim: This study aims to evaluate the microshear bond strength of zirconia-based ceramics with different resin cement systems and surface treatments. Materials and Methods: Forty blocks of zirconia-based ceramic were prepared and embedded in polyvinyl chloride (PVC) tubes with acrylic resin. After polishing, the samples were washed in an ultrasonic bath and dried in an oven for 10 min. Half of the samples were subjected to sandblasting with aluminum oxide. Blocks were divided into four groups ( n = 10) in which two resin cements were used as follows: (1) RelyX? U100 with surface-polished zirconia; (2) RelyX? U100 with surface-blasted zirconia; (3) Multilink with surface-polished zirconia; and 4) Multilink with surface-blasted zirconia. After performing these surface treatments, translucent tubes ( n = 30 per group) were placed on the zirconia specimens, and resin cement was injected into them and light cured. The PVC tubes were adapted in a universal testing machine; a stiletto blade, which was bolted to the machine, was positioned on the cementation interface. The microshear test was performed at a speed of 0.5 mm/min. Failure mode was analyzed in an optical microscope and classified as adhesive, cohesive, or mixed. Results: The null hypothesis of this study was rejected because there was a difference found between the resin cement and the surface treatment. There was a statistical difference ( P < 0.005) in RelyX? U100 with surface-blasted zirconia, in relation to the other three groups. For Multilink groups, there was no statistical difference between them. Conclusion: Self-adhesive resin cement showed a more significant tendency toward bond strength in the ceramic-based zirconium oxide grit-blasted surfaces.
机译:目的:本研究旨在评估氧化锆基陶瓷在不同树脂水泥体系和表面处理条件下的微剪切粘结强度。材料和方法:制备四十个氧化锆基陶瓷块,并用丙烯酸树脂将其嵌入聚氯乙烯(PVC)管中。抛光后,将样品在超声浴中洗涤,并在烤箱中干燥10分钟。一半样品用氧化铝喷砂处理。砌块分为四组(n = 10),其中使用了两种树脂胶结剂:(1)RelyX? U100具有表面抛光的氧化锆; (2)RelyX? U100带表面喷砂氧化锆; (3)多链氧化锆表面抛光;和4)与表面喷砂氧化锆的多重连接。在进行了这些表面处理之后,将透明管(每组n = 30)放置在氧化锆样品上,并将树脂水泥注入其中并进行光固化。 PVC管在通用测试机中进行了改装;将用螺栓固定在机器上的细高铲刀定位在胶结界面上。微剪切试验以0.5mm / min的速度进行。在光学显微镜下分析失效模式,并将其分类为粘合,内聚或混合。结果:这项研究的零假设被拒绝了,因为在树脂水泥和表面处理之间发现了差异。 RelyX有统计学差异(P <0.005)? U100与其他三组有关的表面喷射氧化锆。对于Multilink组,它们之间没有统计差异。结论:自粘树脂水泥在陶瓷基氧化锆喷砂表面表现出更大的粘结强度趋势。

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