二氧化锆在生物工程中的应用现状

O. Morozova, E. Gevorkyan
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摘要

这篇描述性的综述介绍了二氧化锆生物工程应用的最新知识,该材料的优缺点,以及该方向的研究前景。这项工作反映了二氧化锆作为牙科结构和生物植入材料的实际应用的成功。这些实用的特性,如颜色稳定性、化学稳定性、良好的美观性、生物相容性和耐用性,使二氧化锆积极地用作制造各种牙齿结构的材料。与其他陶瓷相比,二氧化锆具有高性能的强度和断裂韧性,可以作为具有相当大载荷的读数重建的替代材料。高硬度决定了二氧化锆作为关节假体的优良材料,因为它的硬度,提供了低水平的磨损和良好的生物相容性。然而,除了积极的特性外,在牙科中使用二氧化锆的一个广泛的实际问题是贴面陶瓷的切屑或断裂。也有报道说,有短缺的矫形植入物,如热液稳定性。本文指出了解决这些问题的方法,并使用了基于二氧化锆的复合材料,可以解决类似的问题,并通过提供更高的断裂韧性和机械强度来增加骨科植入物的使用寿命和可靠性。这种基于二氧化锆的复合材料的存在为骨科植入物的耐磨性提供了显著的提高,这是成功的假肢所必需的
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Current State of Appliance Zirconium Dioxide in Bioengineering
This descriptive review presents current knowledge about the bioengineering use of a zirconium dioxide, the advantages and disadvantages of the material, and the prospects for research in this direction. The work reflects the success of the practical application of the zirconium dioxide as a material for dental structures and biological implants. Such practical characteristics, such as color-stability, chemical stability, good aesthetics, biocompatibility and durability, allowed to actively use the zirconium dioxide as a material for producing various dental structures. In comparison with other ceramics, the presence of high-performance of strength and fracture toughness of the zirconium dioxide enables the use of this material as an alternative material for the reconstructions in the readings with considerable loads. High hardness determines the zirconium dioxide as an excellent material for articular prostheses, because of its hardness, provides a low level of wear and excellent biocompatibility. However, along with positive characteristics, a widespread practical problem of using the zirconium dioxide in dentistry is a chip or fracture of veneering ceramics. It has also been reported that there is a shortage of orthopedic implants such as hydrothermal stability. The solution of such problems is indicated and the use of composite materials based on the zirconium dioxide, which allows to solve a similar problem, as well as to increase the service life and reliability of orthopedic implants by providing a higher fracture toughness and mechanical strength. The existence of such composite materials based on the zirconium dioxide provides a significant increase in the wear resistance of orthopedic implants, which is essential for successful prosthetics
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