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Nanocrystalline-Matrix Ceramic Composites for Improved Fracture Toughness

机译:改善断裂韧性的纳米晶基陶瓷复合材料

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This article focuses on nanocrystalline-matrix ceramic composites specifically designed for applications requiring improved fracture toughness. While the models and theory of toughening mechanisms for microcrystalline composites are well developed, the same cannot be said for their nanocrystal line counterparts. The difficulty in producing fully consolidated ceramic composites that retain a nanocrystalline structure is the main hurdle to thorough investigations in this area. Thus, much of the research on so-called nanocomposites has been on materials with microcrystalline matrices and nanometric second phases. In this article, we present the general principles of toughness mechanisms in microcrystalline ceramic composites, and then extend these ideas to consider how they should apply to ceramics with nanocrystalline matrices. While work in this area is still quite limited, we review current research focused on the production and testing of composites with nanocrystalline matrices and second phases, and we recap the results of some promising fracture toughness reports.
机译:本文重点介绍了专门为需要提高断裂韧性的应用而设计的纳米晶基陶瓷复合材料。尽管微晶复合材料的增韧机理的模型和理论已得到很好的发展,但对于纳米晶线的对应物却不能说相同。生产保留纳米晶结构的完全固结陶瓷复合材料的困难是对该领域进行深入研究的主要障碍。因此,对所谓的纳米复合材料的许多研究都针对具有微晶基质和纳米级第二相的材料。在本文中,我们介绍了微晶陶瓷复合材料中韧性机制的一般原理,然后扩展了这些思想,以考虑它们应如何应用于具有纳米晶基体的陶瓷。尽管在该领域的工作仍然很有限,但我们回顾了当前的研究,该研究侧重于具有纳米晶基体和第二相的复合材料的生产和测试,并且我们回顾了一些有希望的断裂韧性报告的结果。

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