1 Department of Biomaterials and Biomimetics, College of Dentistry, New York University, New York, NY, USA.
2 Materials Measurement Laboratory, National Institute of Standards and Technology, Gaithersburg, MD, USA.
J Dent Res. 2018 Feb;97(2):140-147. doi: 10.1177/0022034517737483. Epub 2017 Oct 16.
Zirconias, the strongest of the dental ceramics, are increasingly being fabricated in monolithic form for a range of clinical applications. Y-TZP (yttria-stabilized tetragonal zirconia polycrystal) is the most widely used variant. However, current Y-TZP ceramics on the market lack the aesthetics of competitive glass-ceramics and are therefore somewhat restricted in the anterior region. This article reviews the progressive development of currently available and next-generation zirconias, representing a concerted drive toward greater translucency while preserving adequate strength and toughness. Limitations of efforts directed toward this end are examined, such as reducing the content of light-scattering alumina sintering aid or incorporating a component of optically isotropic cubic phase into the tetragonal structure. The latest fabrication routes based on refined starting powders and dopants, with innovative sintering protocols and associated surface treatments, are described. The need to understand the several, often complex, mechanisms of long-term failure in relation to routine laboratory test data is presented as a vital step in bridging the gaps among material scientist, dental manufacturer, and clinical provider.
氧化锆是牙科陶瓷中强度最高的材料,越来越多地被制成整体式用于多种临床应用。Y-TZP(氧化钇稳定的四方氧化锆多晶)是最广泛使用的变体。然而,目前市场上的 Y-TZP 陶瓷在美学方面不如竞争激烈的玻璃陶瓷,因此在前牙区域的应用受到一定限制。本文综述了当前和下一代氧化锆的渐进发展,代表了在保持足够强度和韧性的同时提高透明度的协同努力。还检查了为实现这一目标而做出的努力的局限性,例如减少散射光的氧化铝烧结助剂的含量或在四方结构中加入光学各向同性立方相成分。描述了基于精制起始粉末和掺杂剂的最新制造路线,以及创新的烧结方案和相关的表面处理。需要了解与常规实验室测试数据相关的长期失效的几个(通常是复杂的)机制,这是弥合材料科学家、牙科制造商和临床医生之间差距的重要步骤。