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Surface Coating of Oxide Powders: A New Synthesis Method to Process Biomedical Grade Nano-Composites

机译:氧化物粉末的表面涂层:一种处理生物医学级纳米复合材料的新合成方法

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摘要

Composite and nanocomposite ceramics have achieved special interest in recent years when used for biomedical applications. They have demonstrated, in some cases, increased performance, reliability, and stability in vivo, with respect to pure monolithic ceramics. Current research aims at developing new compositions and architectures to further increase their properties. However, the ability to tailor the microstructure requires the careful control of all steps of manufacturing, from the synthesis of composite nanopowders, to their processing and sintering. This review aims at deepening understanding of the critical issues associated with the manufacturing of nanocomposite ceramics, focusing on the key role of the synthesis methods to develop homogeneous and tailored microstructures. In this frame, the authors have developed an innovative method, named “surface-coating process”, in which matrix oxide powders are coated with inorganic precursors of the second phase. The method is illustrated into two case studies; the former, on Zirconia Toughened Alumina (ZTA) materials for orthopedic applications, and the latter, on Zirconia-based composites for dental implants, discussing the advances and the potential of the method, which can become a valuable alternative to the current synthesis process already used at a clinical and industrial scale.
机译:近年来,复合材料和纳米复合陶瓷在用于生物医学应用时引起了特别的兴趣。在某些情况下,它们已证明相对于纯整体陶瓷具有更高的体内性能,可靠性和稳定性。当前的研究旨在开发新的成分和体系结构以进一步提高其性能。但是,调整微结构的能力要求仔细控制制造的所有步骤,从合成纳米粉的合成到加工和烧结。这篇综述旨在加深对与纳米复合陶瓷制造相关的关键问题的理解,重点在于合成方法对开发均质且量身定制的微结构的关键作用。在此框架下,作者开发了一种创新的方法,称为“表面涂覆工艺”,其中基质氧化物粉末被第二相的无机前体涂覆。将该方法分为两个案例研究;前者讨论了用于骨科的氧化锆增韧氧化铝(ZTA)材料,而后者讨论了用于牙科植入物的基于氧化锆的复合材料,讨论了该方法的进展和潜力,可以成为目前合成工艺的宝贵替代品用于临床和工业规模。

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