IMR OpenIR
Thermal behavior of Ni (99.967% and 99.5% purity) deformed to an ultra-high strain by high pressure torsion
H. W. Zhang; X. Huang; R. Pippan; N. Hansen
2010
发表期刊Acta Materialia
ISSN1359-6454
卷号58期号:5页码:1698-1707
摘要Polycrystalline Ni of two purities (99.967% (4N) and 99.5% (2N)) was deformed to an ultra-high strain of epsilon(vM) = 100 (epsilon(vM), von Mises strain) by high pressure torsion at room temperature. The 4N and 2N samples at this strain are nanostructured with an average boundary spacing of similar to 100 nm, a high density of dislocations and a large fraction of high angle boundaries (> 15 degrees) of 0.68-0.74, as determined by transmission electron microscopy, and 0.8-0.83, as determined by electron backscattering diffraction. The deformed samples were annealed isochronally for 1 h at temperatures from 100 to 600 degrees C, and the evolution of the structural parameters (boundary spacing, average boundary misorientation angle and the fraction of high angle boundaries), crystallographic texture and hardness were determined. Based on microstructural parameters the energy stored in the deformed state was estimated to be 14 MPa and 24 MPa for 4N Ni and 2N Ni, respectively. The isochronal annealing leads to a drop in hardness in three stages: a relatively small decrease at low temperatures (recovery), followed by a rapid decrease at intermediate temperatures (recrystallization) and a slow decrease at high temperature (grain growth). Both recovery and recrystallization of the 2N Ni are strongly retarded by the presence of impurities reducing the mobility of boundaries. In the recrystallization stage, changes in hardness, microstructure and texture show that the 4N Ni recrystallizes discontinuously, in spite of a large fraction of high angle boundaries in the deformed state. This finding contradicts previous experiments and theory, which suggest that recrystallization is continuous when the fraction of high angle boundaries is high. In the 2N Ni, the observations suggest that some structural coarsening (continuous recrystallization) may take place simultaneously with discontinuous recrystallization. The findings emphasize the importance of alloying, which can delay the process of recovery and recrystallization and thereby enable tailoring of the microstructure and properties through an optimized annealing treatment. (c) 2009 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
部门归属[zhang, h. w.] chinese acad sci, inst met res, shenyang natl lab mat sci, shenyang 110016, peoples r china. [huang, x.; hansen, n.] tech univ denmark, riso natl lab sustainable energy, mat res div, ctr fundamental res, dk-4000 roskilde, denmark. [pippan, r.] austrian acad sci, erich schmid inst mat sci, christian doppler lab local anal deformat & fract, a-8700 leoben, austria.;zhang, hw (reprint author), chinese acad sci, inst met res, shenyang natl lab mat sci, shenyang 110016, peoples r china;hwzhang2001@yahoo.com.cn
关键词Discontinuous Recrystallization Continuous Recrystallization Nickel Stored Energy Plastic Deformation Plastic-deformation Stored Energy Aluminum Recrystallization Nickel Microstructure Texture Metals Stability Boundary
URL查看原文
WOS记录号WOS:000274931200022
引用统计
被引频次:115[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://ir.imr.ac.cn/handle/321006/31700
专题中国科学院金属研究所
推荐引用方式
GB/T 7714
H. W. Zhang,X. Huang,R. Pippan,et al. Thermal behavior of Ni (99.967% and 99.5% purity) deformed to an ultra-high strain by high pressure torsion[J]. Acta Materialia,2010,58(5):1698-1707.
APA H. W. Zhang,X. Huang,R. Pippan,&N. Hansen.(2010).Thermal behavior of Ni (99.967% and 99.5% purity) deformed to an ultra-high strain by high pressure torsion.Acta Materialia,58(5),1698-1707.
MLA H. W. Zhang,et al."Thermal behavior of Ni (99.967% and 99.5% purity) deformed to an ultra-high strain by high pressure torsion".Acta Materialia 58.5(2010):1698-1707.
条目包含的文件
文件名称/大小 文献类型 版本类型 开放类型 使用许可
1468.pdf(821KB) 开放获取--
个性服务
推荐该条目
保存到收藏夹
查看访问统计
导出为Endnote文件
谷歌学术
谷歌学术中相似的文章
[H. W. Zhang]的文章
[X. Huang]的文章
[R. Pippan]的文章
百度学术
百度学术中相似的文章
[H. W. Zhang]的文章
[X. Huang]的文章
[R. Pippan]的文章
必应学术
必应学术中相似的文章
[H. W. Zhang]的文章
[X. Huang]的文章
[R. Pippan]的文章
相关权益政策
暂无数据
收藏/分享
所有评论 (0)
暂无评论
 

除非特别说明,本系统中所有内容都受版权保护,并保留所有权利。