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通过严重塑性变形制备的纳米多晶金属的断裂与断裂韧性

Fracture and fracture toughness of nanopolycrystalline metals produced by severe plastic deformation.

作者信息

Hohenwarter A, Pippan R

机构信息

Department of Materials Physics, Montanuniversität Leoben, Jahnstrasse 12, 8700 Leoben, Austria

Erich Schmid Institute of Materials Science, Austrian Academy of Sciences, Jahnstrasse 12, 8700 Leoben, Austria.

出版信息

Philos Trans A Math Phys Eng Sci. 2015 Mar 28;373(2038). doi: 10.1098/rsta.2014.0366.

Abstract

The knowledge of the fracture of bulk metallic materials developed in the last 50 years is mostly based on materials having grain sizes, d, in the range of some micrometres up to several hundred micrometres regarding the possibilities of classical metallurgical methods. Nowadays, novel techniques provide access to much smaller grain sizes, where severe plastic deformation (SPD) is one of the most significant techniques. This opens the door to extend basic research in fracture mechanics to the nanocrystalline (NC) grain size regime. From the technological point of view, there is also the necessity to evaluate standard fracture mechanics data of these new materials, such as the fracture toughness, in order to allow their implementation in engineering applications. Here, an overview of recent results on the fracture behaviour of several different ultrafine-grained (d<1 μm) and NC (d<100 nm) metals and alloys covering examples of body- and face-centred cubic structures produced by SPD will be given.

摘要

在过去50年里,关于块状金属材料断裂的知识大多基于传统冶金方法所能获得的晶粒尺寸d在几微米到几百微米范围内的材料。如今,新技术能够实现更小的晶粒尺寸,其中严重塑性变形(SPD)是最重要的技术之一。这为将断裂力学的基础研究扩展到纳米晶(NC)晶粒尺寸范围打开了大门。从技术角度来看,也有必要评估这些新材料的标准断裂力学数据,如断裂韧性,以便将它们应用于工程领域。这里将概述几种不同的超细晶粒(d<1μm)和纳米晶(d<100nm)金属及合金的断裂行为的最新研究结果,这些材料涵盖了通过SPD制备的体心立方和面心立方结构的实例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10e6/4342981/92e4d4cbd196/rsta20140366-g1.jpg

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