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Effects of Mechanical and Chemical Pretreatments of Zirconia or Fiber Posts on Resin Cement Bonding

机译:氧化锆或纤维桩的机械和化学预处理对树脂水泥胶结的影响

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摘要

The bonding strength between resin cement and posts is important for post and core restorations. An important method of improving the bonding strength is the use of various surface pretreatments of the post. In this study, the surfaces of zirconia (fiber) posts were treated by mechanical and/or chemical methods such as sandblasting and silanization. The bonding strength between the zirconia (fiber) post and the resin cement was measured by a push-out method after thermocycling based on the adhesion to Panavia F 2.0 resin cement. The zirconia and fiber posts exhibited different bonding strengths after sandblasting and/or silanization because of the different strengths and chemical structures. The zirconia post showed a high bonding strength of up to 17.1 MPa after a combined treatment of sandblasting and silanization because of the rough surface and covalent bonds at the interface. This effect was also enhanced by using 1,2-bis(trimethoxysilyl)ethane for the formation of a flexible layer at the interface. In contrast, a high bonding strength of 13.9 MPa was obtained for the fiber post treated by silane agents because the sandblasting treatment resulted in damage to the fiber post, as observed by scanning electron microscopy. The results indicated that the improvement in the bonding strength between the post and the resin cement could be controlled by different chemical and/or mechanical treatments. Enhanced bonding strength depended on covalent bonding and the surface roughness. A zirconia post with high bonding strength could potentially be used for the restoration of teeth in the future.
机译:树脂水泥与桩之间的粘结强度对于桩和岩心修复很重要。改善粘结强度的重要方法是对支柱进行各种表面预处理。在这项研究中,通过机械和/或化学方法(例如喷砂和硅烷化)对氧化锆(纤维)柱的表面进行了处理。基于对Panavia F 2.0树脂胶粘剂的粘附性,在热循环后通过推出法测量氧化锆(纤维)桩与树脂胶粘剂之间的粘合强度。由于喷砂和/或硅烷化处理后的强度和化学结构不同,因此氧化锆和纤维柱显示出不同的结合强度。由于表面粗糙且界面处存在共价键,经过喷砂处理和硅烷化处理后,氧化锆柱显示出高达17.1 MPa的高结合强度。通过使用1,2-双(三甲氧基甲硅烷基)乙烷在界面处形成柔性层也增强了该效果。相反,如通过扫描电子显微镜所观察到的,因为喷砂处理导致纤维桩的损坏,所以通过硅烷试剂处理的纤维桩获得了13.9MPa的高粘结强度。结果表明,可以通过不同的化学和/或机械处理来控制柱和树脂水泥之间的粘结强度的提高。增强的结合强度取决于共价结合和表面粗糙度。具有高粘结强度的氧化锆柱将来可能会用于牙齿修复。

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