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Microstructure of Interface between Zirconia and Veneer Porcelain

机译:氧化锆和胶合板之间的界面的微观结构

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Objective: To study whether the veneering technique will have an impact on zirconia grain and the bonding type and relationship on interface between zirconia and veneer porcelain. Materials and methods: After sintered, zirconia was annealed for 15 minute to finish the phase transition from m to t.4 types of veneer porcelains were sintered and observed with SEM (scanning electron microscopy) and TEM (transmission electron microscopy). Results: With etching time extending, it appeared that many materials loosed and corrosional pit deepened, enlarged in the veneer porcelain, which made crystallize structure move into veneering surface. Composition of interface mainly was amorphous glass matrix and zirconia. Energy spectrum analysis showed that there was no remnant glass composition in the zirconia side departing from interface. SEM showed that crystal in veneering side did not participate interface bonding. Conclusion: The interface between 4 types of veneer porcelains and zirconia bonded well. Veneering sintering technique didn't change lattice structure of zirconia, which still was tetragonal structure. The specific bonding property of interface still remained to be analyzed further to determine.
机译:目的:探讨塑料技术是否会对氧化锆谷物的影响和互联网和胶合板之间的界面粘接类型和关系。材料和方法:烧结后,退火氧化锆15分钟以完成从M到T.4的替代型胶合型胶带烧结并观察,用SEM(扫描电子显微镜)和TEM(透射电子显微镜)烧结并观察。结果:随着蚀刻时间延伸,它似乎松开了许多物质和腐蚀坑,在塑料瓷器中扩大,使得结晶结构进入胶质表面。界面的组成主要是无定形玻璃基质和氧化锆。能谱分析显示,氧化锆侧没有脱离界面的残余玻璃组合物。 SEM显示塑料侧的晶体没有参与界面粘合。结论:4种类型的单板瓷器和氧化锆之间的界面粘合得很好。塑料烧结技术没有改变氧化锆的格子结构,仍然是四方结构。仍然仍然将进一步分析界面的特定粘合性能以确定。

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