中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Fundamental factors on formation mechanism of dislocation arrangements in cyclically deformed fcc single crystals

文献类型:期刊论文

作者P. Li ; S. X. Li ; Z. G. Wang ; Z. F. Zhang
刊名Progress in Materials Science
出版日期2011
卷号56期号:3页码:328-377
关键词stress-strain response stacking-fault energy persistent slip bands electron channeling contrast 70-30 alpha-brass low-amplitude fatigue short-range order percent al-alloy deformation-behavior temperature-dependence
ISSN号0079-6425
中文摘要This paper systematically summarizes the cyclic deformation behaviors of different kinds of face-centered cubic (fcc) single crystals, including copper, nickel, silver, as well as copper-aluminium, copper-zinc alloys in attempt to provide a historical perspective of the developments over the last several decades. Combined with plenty of previous research results, the influencing factors on cyclic deformation behaviors can be listed as follows: orientations, stacking fault energy (SFE), short-range order (SRO) and friction stress, or more generally, the ease of cross slip. Among them, the effect of orientations mainly reflects in the formation of the complex dislocation patterns, which depends on the activating secondary slip system. According to the effect of slip mode, the materials can be divided into two types: pure metals and alloys. For pure fcc metals, the effect of SFE is decisive. Due to the easy cross slip of screw dislocations, regular dislocation arrangements, e.g. veins, persistent slip bands (PSBs), labyrinth and cell patterns, are always to form. With increase in alloying element, antiphase boundary energy gradually replaces SFE to become a new decisive factor affecting the cyclic deformation behaviors of fcc alloy single crystals. The corresponding dislocation arrangements consist of dipole array and stacking faults (SFs) under the influence of planar slip. The relationship among several factors is well explained, which will help us better understand the nature of the fatigue damage of metallic materials and then improve the performance of the related materials. (C) 2010 Elsevier Ltd. All rights reserved.
原文出处://WOS:000288110600002
公开日期2012-04-13
源URL[http://210.72.142.130/handle/321006/30480]  
专题金属研究所_中国科学院金属研究所
推荐引用方式
GB/T 7714
P. Li,S. X. Li,Z. G. Wang,et al. Fundamental factors on formation mechanism of dislocation arrangements in cyclically deformed fcc single crystals[J]. Progress in Materials Science,2011,56(3):328-377.
APA P. Li,S. X. Li,Z. G. Wang,&Z. F. Zhang.(2011).Fundamental factors on formation mechanism of dislocation arrangements in cyclically deformed fcc single crystals.Progress in Materials Science,56(3),328-377.
MLA P. Li,et al."Fundamental factors on formation mechanism of dislocation arrangements in cyclically deformed fcc single crystals".Progress in Materials Science 56.3(2011):328-377.

入库方式: OAI收割

来源:金属研究所

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