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Issues in Nanocomposite Ceramic Engineering: Focus on Processing and Properties of Alumina-based Composites

机译:纳米复合陶瓷工程中的问题:关注氧化铝基复合材料的加工和性能

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摘要

Ceramic nanocomposites, containing at least one phase in the nanometric dimension, have received special interest in recent years. They have, in fact, demonstrated increased performance, reliability and lifetime with respect to monolithic ceramics. However, a successful approach to the production of tailored composite nanostructures requires the development of innovative concepts at each step of manufacturing, from the synthesis of composite nanopowders, to their processing and sintering. This review aims to deepen understanding of some of the critical issues associated with the manufacturing of nanocomposite ceramics, focusing on alumina-based composite systems. Two case studies are presented and briefly discussed. The former illustrates the benefits, in terms of sintered microstructure and related mechanical properties, resulting from the application of an engineering approach to a laboratory-scale protocol for the elaboration of nanocomposites in the system alumina-ZrO2-YAG (yttrium aluminium garnet). The latter illustrates the manufacturing of alumina-based composites for large-scale applications such as cutting tools, carried out by an injection molding process. The need for an engineering approach to be applied in all processing steps is demonstrated also in this second case study, where a tailored manufacturing process is required to obtain the desired results.
机译:近年来,包含至少一个纳米级相的陶瓷纳米复合材料引起了人们的特别关注。实际上,与单片陶瓷相比,它们表现出更高的性能,可靠性和使用寿命。然而,一种成功的生产定制复合纳米结构的方法要求从复合纳米粉的合成到其加工和烧结的每个制造步骤都开发创新概念。这篇综述旨在加深对与纳米复合陶瓷制造相关的一些关键问题的理解,重点是基于氧化铝的复合体系。介绍并简要讨论了两个案例研究。前者从烧结的微观结构和相关的机械性能方面说明了益处,这是由于将工程方法应用于实验室规模的方案以在氧化铝-ZrO2-YAG(钇铝石榴石)体系中加工纳米复合材料而产生的。后者说明了通过注射成型工艺进行的大型应用(例如切削工具)的氧化铝基复合材料的制造。在第二个案例研究中也证明了需要在所有处理步骤中应用工程方法的情况,在该案例研究中,需要量身定制的制造过程来获得所需的结果。

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