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镁合金弹塑性多尺度模型单向拉仲数值分析
引用本文:曾祥国,李建军,郑恒伟.镁合金弹塑性多尺度模型单向拉仲数值分析[J].重庆大学学报(自然科学版),2007,30(10):92-96.
作者姓名:曾祥国  李建军  郑恒伟
作者单位:[1]四川大学建筑与环境学院,四川成都610065 [2]重庆大学资源与环境科学学院,重庆400030
基金项目:国家自然科学基金资助项目(10372119);四川大学“985”科技创新平台引进人才资助项目
摘    要:针对含孔洞镁合金材料的宏观力学性能、变形破坏机理,采用多尺度方法建立了准确的镁合金体胞有限元模型,并利用所发展的多尺度本构模型,结合有限元方法获得了在宏观拉伸载荷下材料的局部和宏观特性。多尺度方法分析细观单元体的变形结果表明,随着宏观载荷的增加,宏观上显示出的差异非常微小,但是在细观单元体的变形过程中明显观察到,随着载荷步的增加,含长方体形孔洞的塑性变形能力逐渐递减,且应力集中现象比含圆柱形孔洞的细观模型明显。

关 键 词:多尺度  镁合金  孔洞  弹塑性  有限元
文章编号:1000-582X(2007)10-0092-05
修稿时间:2007-06-15

Numerical Simulation of Elastoplastic Multi-scales Model for Magnesium Alloy Under Tensile Load
ZENG Xiang-guo,LI Jian-jun,ZHENG Heng-wei.Numerical Simulation of Elastoplastic Multi-scales Model for Magnesium Alloy Under Tensile Load[J].Journal of Chongqing University(Natural Science Edition),2007,30(10):92-96.
Authors:ZENG Xiang-guo  LI Jian-jun  ZHENG Heng-wei
Institution:1. College of Civil Engineering and Mechanics, Sichuan University, Chengdu 610065, China; 2.College of Resource and Environmental Science, Chonging University, Chongqing 400030, China
Abstract:In order to investigate the macroscopical mechanical performance of magnesium alloy material containing pore and the mechanism during distorting destructing, an accurate finite element model of magnesium alloy using the multiscales method was developed, and the macroscopic properties of material under the macroscopic tensile load using the developed constitutive model of multi-scales and finite element method was obtained. By analyzing the distortion results of meso-model through the multi-scales method, with macroscopical load increasing, the difference demonstrated on the macroscopic is very small, however, with the increase of the load step, the phenomenon that the ability of plasticity deformation of the meso-models which includes the cuboid pore decreased gradually remarkable and the phenomenon of stress centralized is more severity than the meso-models including cylindrical pore could be obviously observed during the process of deformation on the meso-models.
Keywords:multi-scale  magnesium alloy  pore  elastoplasticity  finite element
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