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Structural Ceramic Nanocomposites: A Review of Properties and Powders’ Synthesis Methods

机译:结构陶瓷纳米复合材料:性质和粉末合成方法综述

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摘要

Ceramic nanocomposites are attracting growing interest, thanks to new processing methods enabling these materials to go from the research laboratory scale to the commercial level. Today, many different types of nanocomposite structures are proposed in the literature; however, to fully exploit their exceptional properties, a deep understanding of the materials’ behavior across length scales is necessary. In fact, knowing how the nanoscale structure influences the bulk properties enables the design of increasingly performing composite materials. A further key point is the ability of tailoring the desired nanostructured features in the sintered composites, a challenging issue requiring a careful control of all stages of manufacturing, from powder synthesis to sintering. This review is divided into four parts. In the first, classification and general issues of nanostructured ceramics are reported. The second provides basic structure–property relations, highlighting the grain-size dependence of the materials properties. The third describes the role of nanocrystalline second-phases on the mechanical properties of ordinary grain sized ceramics. Finally, the fourth part revises the mainly used synthesis routes to produce nanocomposite ceramic powders, underlining when possible the critical role of the synthesis method on the control of microstructure and properties of the sintered ceramics.
机译:陶瓷纳米复合材料正吸引着越来越多的兴趣,这要归功于新的加工方法,使这些材料能够从研究实验室规模发展到商业规模。今天,文献中提出了许多不同类型的纳米复合结构。但是,要充分利用它们的卓越性能,必须对材料在长度范围内的行为有深刻的了解。实际上,了解纳米级结构如何影响整体性能可以设计出性能越来越高的复合材料。另一个关键点是在烧结复合材料中定制所需纳米结构特征的能力,这是一个具有挑战性的问题,需要仔细控制从粉末合成到烧结的所有制造阶段。这篇评论分为四个部分。首先,报道了纳米结构陶瓷的分类和一般问题。第二个提供基本的结构-属性关系,突出了材料属性对晶粒尺寸的依赖性。第三部分描述了纳米晶第二相在普通晶粒尺寸陶瓷的机械性能中的作用。最后,第四部分修改了生产纳米复合陶瓷粉末的主要合成路线,并在可能的情况下强调了合成方法在控制烧结陶瓷的微观结构和性能方面的关键作用。

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