牙科用全陶瓷材料

S. Teja, P. Teja
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引用次数: 2

摘要

在牙科中,陶瓷通常被称为非金属,无机结构,主要含有氧与一种或多种金属或半金属元素的化合物。它们由钠、钾、钙、镁、铝、硅、磷、锆和钛组成。在结构上,牙科陶瓷包含基于二氧化硅结构的晶体相和玻璃相,其特征是二氧化硅四面体,中心含有Si4+离子和四个O -离子。生物相容性、美观性、耐用性和更容易定制的特性导致了陶瓷的使用增加。陶瓷牙的特点是它的颜色和半透明的能力,以及它的强度模仿天然牙齿。陶瓷具有良好的口腔内稳定性和耐磨性,增加了它们的耐久性。基本上,牙齿和骨骼的无机成分是羟基磷灰石陶瓷。在过去的几年里,随着新的材料和加工技术的引入,牙科陶瓷的技术发展令人难以置信。强度和韧性的提高,使得大跨度固定部分假体、种植基台和种植体的适应症范围得以扩大。虽然基于陶瓷的材料仍然是牙科科学的主要组成部分,但已经有了用全陶瓷系统取代金属陶瓷系统的举措。许多具有高度美观性、与组织生物相容性和耐久性的全陶瓷正在被开发出来。计算机辅助设计/计算机辅助制造技术的进步导致高强度陶瓷材料的广泛流行。这些材料非常美观,与组织具有生物相容性,并且在自然界中持久耐用。本文就全陶瓷材料在牙科中的应用作一综述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
All-ceramic materials in dentistry
In dentistry, ceramics are often referred to as nonmetallic, inorganic structures primarily containing compounds of oxygen with one or more metallic or semimetallic elements. They are composed of sodium, potassium, calcium, magnesium, aluminum, silicon, phosphorus, zirconium, and titanium. Structurally, dental ceramics contain a crystal phase and a glass phase based on the silica structure, characterized by silica tetrahedra, containing central Si4+ ion with four O− ions. Biocompatibility, esthetics, durability, and easier customization properties have led to the increased usage of ceramics. The specialty of ceramic teeth is its ability to mimic the natural tooth in color and translucency along with its strength. Ceramics have excellent intraoral stability and wear resistance adding to their durability. Basically, the inorganic composition of teeth and bones are ceramics which is hydroxyapatite. Over the past few years, the technological evolution of ceramics for dental applications has been incredible, as new materials and processing techniques are being introduced. The improvement in strength, as well as toughness, has made it possible to expand the range of indications to long-span fixed partial prostheses, implant abutments, and implants. While porcelain-based materials are still a major component in dental science, there have been moves to replace metal ceramics systems with all-ceramic systems. Numerous all-ceramics are being developed which is highly esthetic, biocompatible to tissue, and long-lasting in nature. Advances in computer-aided design/computer-aided manufacturing technologies have led to immense popularity of high-strength ceramic materials. These materials are highly esthetic, biocompatible to tissue, and long-lasting in nature. In this review, we will discuss all-ceramic materials which are used in dentistry.
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