首页> 美国卫生研究院文献>Journal of Clinical and Diagnostic Research : JCDR >Effect of Four Surface Treatment Methods on the Shear Bond Strength of Resin Cement to Zirconia Ceramics- A Comparative in Vitro Study
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Effect of Four Surface Treatment Methods on the Shear Bond Strength of Resin Cement to Zirconia Ceramics- A Comparative in Vitro Study

机译:四种表面处理方法对树脂水泥对氧化锆陶瓷剪切粘结强度的影响-体外比较

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摘要

>Background: Improving the retention of zirconia-based ceramics is desirable in order to avoid the failure of crowns and fixed partial dentures .This can be achieved by creating micromechanical retention using surface treatments. Therefore, it becomes necessary to constantly compare and re-evaluate the influence of different surface treatment methods on the bond strength .>Aim: To evaluate the effect of four different surface treatments on shear bond strength between zirconia surface and resin cements.>Settings and Design: Observational study.>Materials and Methods: Twenty five zirconia plate samples were prepared based on ISO standards and were divided into five groups and each group was subjected to following five different surface treatments : no treatment, sandblasting with 110 μm alumina, sandblasting with 250 μm alumina, acid etching with 9.6% hydrofluoric acid and laser radiation on the surface. All the samples were surface disinfected and were embedded in blocks of autopolymerising resin to check shear bond strength on the universal testing machine. Statistical analysis used-data was analyzed using one-way ANOVA and a Post Hoc Bonferroni test.>Results: Analysis of the data showed that the highest shear bond strength values were obtained with laser treatment (18.120 ± 0.8159 Mpa). The lowest values were obtained with control group (9.166 ± 0.569 Mpa). Laser treatment increased the shear bond strength values significantly (p<0.05).>Conclusion: Surface treatments increased the bond strength between zirconia and resin cement and carbon dioxide laser could be an effective surface treatment for increasing bond strength.
机译:>背景:需要提高氧化锆陶瓷的固位性,以避免冠和固定局部义齿的破坏。这可以通过使用表面处理产生微机械固位来实现。因此,有必要不断地比较和重新评估不同表面处理方法对粘结强度的影响。>目标:评估四种不同表面处理对氧化锆表面与表面之间的剪切粘结强度的影响。 >设置和设计:观察性研究。>材料和方法:根据ISO标准制备了25个氧化锆板样品,分为5组,每组分别进行进行以下五种不同的表面处理:不进行处理,用110μm氧化铝喷砂,用250μm氧化铝喷砂,用9.6%氢氟酸进行酸蚀刻以及在表面进行激光辐射。所有样品均经过表面消毒,然后包埋在自动聚合树脂块中,以在通用测试机上检查剪切粘结强度。使用单向方差分析和Post Hoc Bonferroni检验对使用过的统计数据进行分析。>结果:数据分析表明,激光处理可获得最高的剪切粘结强度值(18.120±0.8159 Mpa )。最低值是对照组(9.166±0.569 Mpa)。激光处理显着提高了剪切粘结强度值(p <0.05)。>结论:表面处理可提高氧化锆与树脂水泥之间的粘结强度,而二氧化碳激光可能是提高粘结强度的有效表面处理。

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