Zirconium dioxide. Review

P. Fedorov, E. G. Yarotskaya
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引用次数: 11

Abstract

A review of zirconium dioxide or zirconia ZrO2 is presented. The finding of zirconium compounds in nature, the physical and chemical properties of ZrO2 are given, the polymorphism of zirconium oxide, and the phase diagrams of systems with its participation are considered. The areas of application of zirconia compounds are highlighted: automotive industry, electronics industry, energy and industrial ecology, equipment manufacturing and mechanical engineering the production of zirconium-based refractories, ceramics, enamels, glass, superhard materials, applications in medicine, nuclear energetics, and many others areas of human activity. Cubic modification of zirconium dioxide, stabilized by oxides of rare earth elements,is a jewelry stone (fianite). Partially stabilized zirconium dioxide is a versatile structural material with very high resistance to crack propagation. Solid solutions of REE oxides, especially scandium, have a high oxygen conductivity, which is used in sensors for measuring the partial pressure of oxygen and in fuel cells. Attention is paid to heat-resistant oxide ceramic materials with low thermal conductivity used in the quality of heat-resistant coatings. Considerable attention was paid to the second most important mineral of zirconia - baddeleyite (ZrO2). Baddeleyite is widely used in the production of refractory materials. It is mined for the production of metallic zirconium. The achievements of Soviet and Russian scientists in thedevelopment of technologies for the production of fianite and artificial baddeleyite are presented.
二氧化锆。审查
本文综述了二氧化锆和ZrO2氧化锆的研究进展。本文介绍了自然界中锆化合物的发现、ZrO2的物理化学性质、氧化锆的多晶性及其参与体系的相图。氧化锆化合物的应用领域是:汽车工业、电子工业、能源和工业生态、设备制造和机械工程、锆基耐火材料、陶瓷、搪瓷、玻璃、超硬材料的生产、医学、核能学和许多其他人类活动领域的应用。立方改性的二氧化锆,由稀土元素的氧化物稳定,是一种珠宝石(费长石)。部分稳定二氧化锆是一种通用的结构材料,具有很高的抗裂纹扩展能力。稀土氧化物的固溶体,特别是钪,具有高氧导电性,用于测量氧气分压的传感器和燃料电池。低导热系数的耐热氧化物陶瓷材料在耐热涂料的质量上受到重视。人们对氧化锆中第二重要的矿物——锆辉石(ZrO2)给予了相当的关注。沸石广泛应用于耐火材料的生产。开采它是为了生产金属锆。介绍了苏联和俄罗斯科学家在生产钒钛和人造钒钛技术方面取得的成就。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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