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Insights into Porcelain to Zirconia Bonding

机译:陶瓷与氧化锆键合的见解

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摘要

The application of zirconia, ZrO2, as a biomaterial in medicine started in the early 1980s. Since then, numerous studies have been conducted on this special ceramic material to assess and discover its unique characteristics in practical biomedical applications. Also, zirconia has manifested its extraordinary advantages for use in dental clinical practice since the late 1990s, such as its excellent biocompatibility, good aesthetical appeal and outstanding biomechanical properties. With the development of fabrication methods and more extensive comprehension of this material, zirconia has been employed in more and more dental restorations from single crowns and root canal posts to long-span fixed dentures and, very recently, even as dental implants. However, there are still some drawbacks in its dental applications. Such drawbacks are its relatively weak bonding with porcelain when compared with metal-ceramic system, less reliable bonding with resin-based adhesives, and possible failures caused, e.g., by the effects of low temperature degradation. Although many studies have been carried out on porcelain to zirconia bonding, a thorough understanding of its real mechanism is still far from being achieved. The effects of different treatments before or during the veneering procedure are not clearly elucidated, thus they need further investigations. The aim of this article is to outline the characteristics of zirconia and descriptions of porcelain to zirconia interfacial bonding based on the research conducted in the past few years.
机译:氧化锆ZrO2作为生物材料在医学中的应用始于1980年代初。从那时起,对这种特殊的陶瓷材料进行了许多研究,以评估和发现其在实际生物医学应用中的独特特性。另外,自1990年代末以来,氧化锆就表现出了在牙科临床实践中使用的非凡优势,例如其优异的生物相容性,良好的美学吸引力和出色的生物力学性能。随着制造方法的发展和对该材料的更广泛理解,氧化锆已用于从单冠和根管桩到大跨度固定义齿的牙科修复,越来越多地被使用,直到最近,甚至还用作牙科植入物。但是,在牙科应用中仍然存在一些缺点。这些缺点是,与金属陶瓷系统相比,它与瓷器的粘结性较弱;与树脂基粘合剂的粘结性较差;以及例如由于低温降解的影响而可能引起的故障。尽管已对瓷器与氧化锆的键合进行了许多研究,但仍未完全了解其真正机理。不清楚在饰面之前或期间进行不同处理的效果,因此需要进一步研究。本文的目的是根据过去几年的研究概述氧化锆的特性,并描述陶瓷与氧化锆的界面结合。

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