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Effects of Liner-Bonding of Implant-Supported Glass–Ceramic Crown to Zirconia Abutment on Bond Strength and Fracture Resistance

机译:种植体支撑的玻璃陶瓷冠对氧化锆基台的衬里粘接对粘接强度和耐断裂性的影响

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摘要

This study was conducted to test the hypothesis that heat-bonding with a liner positively affects the bond strength and fracture resistance of an implant-supported glass–ceramic crown bonded to a zirconia abutment produced by a computer-aided design/computer-aided milling (CAD/CAM) procedure. Lithium disilicate-reinforced Amber Mill-Q glass ceramic blocks were bonded to 3 mol% yttria stabilized tetragonal zirconia polycrystal (3Y-TZP) blocks by heat-bonding with a liner or cementation with a dual-cure self-adhesive resin cement for a microtensile bond strength test. CAD/CAM implant-supported glass ceramic crowns were produced using Amber Mill-Q blocks and bonded to a milled 3Y-TZP zirconia abutments by heat-bonding or cementation for a fracture test. A statistical analysis was conducted to investigate the significant differences between the experimental results. The mode of failure was analyzed using high-resolution field emission scanning electron microscopy. Chemical bonding was identified at the interface between the zirconia ceramic and liner. The mean tensile bond strength of the liner-bonded group was significantly higher than that of the cement-bonded group. The initial chipping strength of the liner-bonded group was significantly higher than that of the cement-bonded group, although no statistically significant difference was found for the fracture strength. The mode of failure was mixed with cohesive fracture through the liner, whereas the cement-bonded group demonstrated adhesive failure at the interface of bonding.
机译:进行这项研究是为了验证以下假设,即使用衬里进行热粘合会积极影响由计算机辅助设计/计算机辅助铣削生产的,与氧化锆基台粘合的植入物支撑的玻璃-陶瓷牙冠的粘合强度和抗断裂性( CAD / CAM)程序。通过衬里热粘合或通过双固化自粘树脂胶粘剂进行胶凝,将二硅酸锂增强的Amber Mill-Q玻璃陶瓷块粘合到3 mol%的氧化钇稳定的四方氧化锆多晶(3Y-TZP)块上。粘结强度测试。使用Amber Mill-Q块生产CAD / CAM植入物支撑的玻璃陶瓷牙冠,并通过热粘结或胶结法将其粘结到磨碎的3Y-TZP氧化锆基台上,以进行断裂测试。进行统计分析以研究实验结果之间的显着差异。使用高分辨率场发射扫描电子显微镜分析了失效模式。在氧化锆陶瓷和衬里之间的界面处发现了化学键。衬砌粘结组的平均拉伸粘结强度显着高于水泥粘结组。尽管断裂强度没有统计学上的显着差异,但衬砌结合组的初始抗裂强度明显高于水泥结合组。破坏的模式与通过内衬的内聚破裂混合在一起,而水泥粘结组在粘结界面处表现出粘结破坏。

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