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AZ31镁合金等通道转角挤压应变累积均匀性分析及组织性能研究
Homogeneous Deformation Analysis and Microstructure Properties Study of AZ31 Magnesium Alloy in Multi-pass Equal Channel Angular Pressing

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文摘 等通道转角挤压工艺(Equal Channel Angular Pressing,ECAP)是通过剧烈塑性变形改变微观组织结构生产超细晶粒材料的材料加工方法,工件变形的均匀性一直是ECAP 工艺过程中影响材料性能的主要原因之一.采用空间转换法实现了AZ31镁合金多道次ECAP挤压过程中有限元分析相关场量的准确传递,完成了四种不同挤压路径ECAP多道次挤压工艺的有限元模拟,获得了相应挤压件累积等效应变的分布规律.研究确定了经过四道次ECAP挤压以后等效应变累积最为均匀的挤压路径.通过微观组织观察和室温拉伸力学性能实验探讨了不同路径多道次ECAP挤压AZ31镁合金的组织性能变化规律.分析结果表明通过合适的变形路径可以获得细小而均匀的微观组织,当材料的应变累积均匀时,其力学性能也较好.
其他语种文摘 Equal channel angular pressing (ECAP) is an interesting method for changing microstructure and producing ultra fine grained (UFG) materials through super-plastic deformation. The homogeneous deformation is the main factor that influences the material performance during ECAP. Four processing routes are analyzed in detail by using finite element method with spatial switching method through rotating three-dimensional model in multi-pass pressing. The accumulated effective strain distribution of the work-piece processed by ECAP for four pressing routes are obtained respectively through finite element simulation. The processing route that can generate more homogeneous effective's main distribution in sample after four routes processing is defined. The mechanical property of AZ31 magnesium alloy processed by multi ECAP passes in different routes was analyzed through microstructure observation and mechanical tensile test at room temperature. The experimental results show that the fine and uniform microstructure can be acquired by appropriate deformation route, the mechanical property of AZ31 magnesium alloy is greatly improved when strain accumulation uniform after ECAP processing.
来源 材料工程 ,2013(10):13-19 【核心库】
DOI 10.3969/j.issn.1001-4381.2013.10.002
关键词 等通道转角挤压 ; 有限元模拟 ; 变形均匀性分析 ; AZ31镁合金
地址

山东大学模具工程技术研究中心, 济南, 250061

语种 中文
文献类型 研究性论文
ISSN 1001-4381
学科 金属学与金属工艺
基金 国家教育部长江学者与创新团队发展计划 ;  山东省自然科学基金
文献收藏号 CSCD:4967303

参考文献 共 15 共1页

1.  Hou L F. High energy impact techniques application for surface grain refinement in AZ91D magnesium alloy. Journal of Materials Science,2008,43(13):4658-4665 被引 3    
2.  Luo A A. Magnesium alloy development for automotive applications. Materials Science Forum,2012,706(1):69-82 被引 3    
3.  张丁非. 镁合金板材轧制成型的研究进展. 材料工程,2009(10):85-90 被引 16    
4.  Gleiter H. Nanostructured materials:basic concepts and microstructure. Acta Materialia,2000,48(1):1-29 被引 129    
5.  Figueiredo R B. Strategies for achieving high strain rate superplasticity in magnesium alloys processed by equal-channel angular pressing. Scripta Materialia,2009,61(1):84-87 被引 8    
6.  Matsubara K. Developing superplasticity in a magnesium alloy through a combination of extrusion and ECAP. Acta Materialia,2003,51(11):3073-3084 被引 47    
7.  何运斌. ECAP法制备细晶ZK60镁合金的微观组织与力学性能. 材料工程,2011(6):32-38 被引 14    
8.  Beyerlein I J. Texture evolution in equal-channel angular extrusion. Progress in Materials Science,2009,54(4):427-510 被引 27    
9.  靳丽. 两步等通道角挤压AZ31镁合金的微观组织和力学性能. 上海交通大学学报,2005,39(11):1175-1179 被引 1    
10.  Tham Y W. Study of deformation homogeneity in the multi-pass equal channel angular extrusion process. Journal of Materials Processing Technology,2007,192:121-127 被引 3    
11.  Cerri E. FEM and metallurgical analysis of modified 6082 aluminium alloys processed by multipass ECAP:influence of material properties and different process settings on induced plastic strain. Journal of Materials Processing Technology,2009,209(3):1550-1564 被引 7    
12.  Xu S. Numerical studies on processing routes and deformation mechanism of multi-pass equal channel angular pressing processes. Journal of Materials Processing Technology,2006,176(1):251-259 被引 8    
13.  Basavaraj V P. Study of channel angle influence on material flow and strain inhomogeneity in equal channel angular pressing using 3D finite element simulation. Journal of Materials Processing Technology,2009,209(1):89-95 被引 23    
14.  Kim W J. Texture development and its effect on mechanical properties of an AZ61 Mg alloy fabricated by equal channel angular pressing. Acta Materialia,2003,51(11):3293-3307 被引 108    
15.  Yan K. Effects of rotary-die ecap routes on microstructure and mechanical property of AZ31 magnesium alloy. Acta Metallurgica Sinica,2010,46(1):27-33 被引 1    
引证文献 14

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2 李轶 热处理对AZ80镁合金疲劳性能的影响 航空材料学报,2014,34(6):33-39
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