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Microtensile bond strength of different components of core veneered all-ceramic restorations Part Ⅱ: Zirconia veneering ceramics

机译:贴面全瓷修复体不同组分的微拉伸粘结强度第二部分:氧化锆贴面陶瓷

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Objectives. The purpose of this research was to investigate microtensile bond strength between one type of zirconia substrate and various commercial veneer ceramics. The effect of an optional liner material between the core and veneer was also evaluated where applicable. Methods. Bilayered zirconia veneer discs were fabricated from five layering and two pressable veneer ceramics. Additionally, discs from each veneer ceramic were prepared. The discs were cut into microbars of 6 mm in length and 1 mm in cross-section. The microtensile bond strength was tested in a universal testing machine. The fracture surfaces of the microbars were examined with scanning electron microscopy (SEM) and EDAX. Results. The microtensile strength of Rondo Dentine and Lava Dentine veneer ceramics were significantly higher than the other tested veneer ceramics. Furthermore, the layered systems Rondo Dentine and Ceram Express were significantly stronger than the other tested core-veneer ceramics. The application of liner material dramatically affected the bond strength and failure mode, which was also material dependent. SEM analysis showed that two pressable veneers and one type of layering veneer ceramic failed entirely cohesively in veneer side while the remaining test groups had higher percentage of interfacial failure. Significance. Selection of stronger veneer ceramics which have good bond strength with zirconia can reduce the chances of chipping and delamination under function. The liner material should only be used with some layering veneers but not in combination with pressable veneers as it will result in weakening of the microtensile bond strength.
机译:目标。这项研究的目的是研究一种类型的氧化锆衬底与各种市售单板陶瓷之间的微拉伸粘结强度。在适用的情况下,还评估了芯和饰面板之间的可选衬里材料的效果。方法。双层氧化锆单板圆盘由五层和两个可压制单板陶瓷制成。另外,由每种单板陶瓷制备盘。将圆盘切成长度为6 mm,横截面为1 mm的微棒。在通用测试机中测试了微拉伸粘合强度。用扫描电子显微镜(SEM)和EDAX检查微棒的断裂表面。结果。 Rondo Dentine和Lava Dentine单板陶瓷的微拉伸强度显着高于其他测试的单板陶瓷。此外,层状体系Rondo Dentine和Ceram Express明显比其他经过测试的芯面陶瓷强。衬里材料的应用极大地影响了粘合强度和破坏模式,这也取决于材料。 SEM分析表明,两个可压薄板和一种类型的薄板陶瓷在薄板侧完全粘合失败,而其余测试组的界面破损率更高。意义。选择与氧化锆具有良好粘结强度的强度更高的贴面陶瓷可以减少功能性下崩裂和分层的机会。衬里材料应仅与某些层状饰面板一起使用,而不应与可压饰面板结合使用,因为这会导致微拉伸粘合强度减弱。

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