中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Fatigue crack propagation behavior of TiNi50.6 shape memory alloy

文献类型:期刊论文

作者G. B. Rao ; J. Q. Wang ; W. Ke ; E. H. Han
刊名Journal of Materials Science & Technology
出版日期2001
卷号17期号:4页码:403-408
关键词ti-ni alloys deformation pseudoelasticity copper
ISSN号1005-0302
中文摘要The fatigue crack propagation behavior of TiNi50.6 shape memory alloy was studied. The experiment results showed that the crack propagation properties of this alloy display difference and similarity in comparison with common metallic materials. Because of the stress concentration there was stress induced martensite transformation (SIMT) near the crack tip though the nominal stress was lower than the threshold stress of SIMT. The position and the amount of SIMT was in situ observed by a quester remote measurement system (QRMS). The observation results showed that the position of SIMT was beside the crack tip and was not in the plastic, zone of common metallic materials (in front of the crack tip). The SIMT zone at an angle of about 45 degrees to the direction of the crack propagation, like a butterfly, appeared in the loading process, disappeared in the unloading process and grew larger with the increase of DeltaK. The crack propagation rate(da/dN) followed the linear law in Ig-Ig plot. Observation of the crack surface showed fatigue striation clearly. The relationship between the site and the size of the plastic zone and the SIMT zone is discussed and a model is given to explain both the similarity and the difference of the crack propagation property of TiNi50.6 to common metal materials.
原文出处://WOS:000170191000003
公开日期2012-04-14
源URL[http://ir.imr.ac.cn/handle/321006/36787]  
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
G. B. Rao,J. Q. Wang,W. Ke,et al. Fatigue crack propagation behavior of TiNi50.6 shape memory alloy[J]. Journal of Materials Science & Technology,2001,17(4):403-408.
APA G. B. Rao,J. Q. Wang,W. Ke,&E. H. Han.(2001).Fatigue crack propagation behavior of TiNi50.6 shape memory alloy.Journal of Materials Science & Technology,17(4),403-408.
MLA G. B. Rao,et al."Fatigue crack propagation behavior of TiNi50.6 shape memory alloy".Journal of Materials Science & Technology 17.4(2001):403-408.

入库方式: OAI收割

来源:金属研究所

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