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晶体塑性模拟在等通道转角挤压中的应用
引用本文:李赛毅. 晶体塑性模拟在等通道转角挤压中的应用[J]. 中国有色金属学会会刊, 2013, 23(1): 170-179. DOI: 10.1016/S1003-6326(13)62444-9
作者姓名:李赛毅
作者单位:中南大学材料科学与工程学院,长沙410083;中南大学有色金属材料科学与工程教育部重点实验室,长沙410083
基金项目:Projects(50871040,51271204) supported by the National Natural Science Foundation of China;Project(2012CB619500) supported by the National Basic Research Program of China;Project(NCET-06-0741) supported by the Program for New Century Excellent Talents, China
摘    要:概述了晶体塑性模拟在面心立方金属等通道转角挤压中的典型应用.结果表明,这些模拟能够较好地解释仅基于宏观变形行为所不能解释的晶粒细化效率的路径相关性和亚结构方向性问题,能够满意地预测不同加工条件下材料的晶粒取向稳定性和织构演变.应用表明,晶体塑性模拟是探索晶粒变形的晶体学特性以及相关行为的有效手段,而这些特性常常被现有宏观理论所忽略或错误地解释.

关 键 词:剧烈塑性变形  等通道转角挤压  织构  晶体塑性  应变路径  晶粒细化
收稿时间:2012-11-10

Application of crystal plasticity modeling in equal channel angular extrusion
Sai-yi LI. Application of crystal plasticity modeling in equal channel angular extrusion[J]. Transactions of Nonferrous Metals Society of China, 2013, 23(1): 170-179. DOI: 10.1016/S1003-6326(13)62444-9
Authors:Sai-yi LI
Affiliation:Sai-yi LI1,2 1.School of Materials Science and Engineering,Central South University,Changsha 410083,China;2.Key Laboratory of Nonferrous Metal Materials Science and Engineering,Ministry of Education,Central South University,Ch angsha 410083,China
Abstract:Some applications of crystal plasticity modeling in equal channel angular extrusion (ECAE) of face-centered cubic metals were highlighted. The results show that such simulations can elucidate the dependency of grain refinement efficiency on processing route and the directionality of substructure development, which cannot be explained by theories that consider only the macroscopic deformation behavior. They can also capture satisfactorily the orientation stability and texture evolution under various processing conditions. It is demonstrated that crystal plasticity models are useful tools in exploring the crystallographic nature of grain deformation and associated behavior that are overlooked or sometimes erroneously interpreted by existing phenomenological theories.
Keywords:severe plastic deformation  equal channel angular extrusion  texture  crystal plasticity  strain path  grain refinement
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