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Simulation of texture evolution during plastic deformation of FCC,BCC and HCP structured crystals with crystal plasticity based finite element method 被引量:5

基于耦合有限元的晶体塑性力学模型的FCC,BCC和HCP晶体织构演化的模拟(英文)
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摘要 Two alternative formulations of single crystal plasticity model were introduced respectively and two schemes were implemented in the explicit FE code with software ABAQUS/Explicit by writing the user subroutine VUMAT.Meshes containing material data were created with solid elements.Each element represented an individual grain,and the grain orientations were explicitly stored and updated at each increment.Tangential modulus method was employed to calculate the plastic shear strain increment of deformation systems in combination with a hardening law to describe the hardening responses.Both two developed subroutines were applied to simulate the texture evolution during the uniaxial tension of copper(FCC),cold rolling of IF steel(BCC) and uniaxial compression of AZ31 magnesium alloy(HCP).The predicted texture distributions are in qualitative agreement with the experimental results. 介绍单晶体模型的2种实现方法,并通过对有限元软件ABAQUS/Explicit的用户材料接口VUMAT做二次开发,实现2种单晶体模型构架和显式有限元方法的耦合。采取实体单元来存储材料信息,每个单元代表一个晶粒,在每个增量步中读取并更新晶粒取向。采用切线系数法来计算每个增量步中不同变形系统的塑性应变增量,通过硬化模型来描述硬化响应。利用编制的2种用户子程序模拟铜(FCC)单向拉伸过程、IF铁(BCC)冷轧过程和AZ31 镁合金(HCP)单向压缩过程中的织构演化,模拟结果和试验结果吻合较好。
出处 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第8期1817-1825,共9页 中国有色金属学报(英文版)
基金 Projects (50821003,50405014) supported by the National Natural Science Foundation of China Projects (10QH1401400,10520705000,10JC1407300) supported by Shanghai Committee of Science and Technology,China Project (NCET-07-0545) supported by Program for New Century Excellent Talents in University,China Project supported by Ford University Research Program
关键词 single crystal model texture additive decomposition multiplicative decomposition 单晶体模型 织构 加法分解 乘法分解
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  • 1张少睿,李大永,彭颖红,梁胜.FCC金属板成形率无关晶体塑性模拟[J].材料科学与工艺,2004,12(4):372-374. 被引量:3
  • 2NAKAMACHI E,HIRAIWA K,MORIMOTO H,et al.Elastic/crystalline viscoplastic finite element analyses of single-and poly-crystal sheet deformations and their experimental verification[J].Int.J.of Plasticity,2000,16:1 419-1 441.
  • 3NAKAMACHI E,DONG X.Study of texture effect on sheet failure in a limit dome height test by using elastic/crystalline viscoplastic finite element analysis[J].J.Appl.Mech.Trans.ASME.1997,64:519-524.
  • 4TAKAHASHI H,MOTOHASHI H,TSUCHIDA S.Development of plastic anisotropy in rolled aluminum sheets[J].International Journal of Plasticity,1996,12(7):935-949.
  • 5ANAND L,BALASUBRAMANIAN S.Polycrystal plasticity:application to earing in cup drawing[J].Annals of the CIRP,1996,45(1):263-268.
  • 6CHOI S H,CHO J H,OH K H,et al.Texture evolution of FCC sheet metals during deep drawing process[J].International Journal of Mechanical Sciences,2000,42(8):1 571-1 592.
  • 7RAABE D,ROTERS F.Using texture components in crystal plasticity finite element simulations[J].International Journal of Plasticity,2004,20:339-361.
  • 8富田佳宏.数值弹塑性力学[M].胡平等,译.长春:吉林科学技术出版社,1995.
  • 9BUNGE H J.Texture analysis in material science[M].London:Butterworths,1982.
  • 10PIERCE D,ASARO R J,NEEDLEMAN A.Material rate dependent and localized deformation in crystalline solids[J].Acta Metall.,1983,31:1 951-1 972.

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  • 1林金保,王渠东,陈勇军.镁合金塑性成形技术研究进展[J].轻金属,2006(10):76-80. 被引量:10
  • 2汪凌云,黄光杰,陈林,黄光胜,李伟,潘复生.镁合金板材轧制工艺及组织性能分析[J].稀有金属材料与工程,2007,36(5):910-914. 被引量:43
  • 3RYTTBERG K, KNUTSON WEDEL M, RECINA V, DAHLMAN P, NYBORG L. The effect of cold ring rolling on the evolution of microstructure and texture in 100Cr6 steel [J]. Materials Science and Engineering A, 2010, 527: 2431-2436.
  • 4QIAN Dong-sheng, HUA Lin, DENG Jia-dong. FE analysis for radial spread behavior in three-roll cross rolling with small-hole and deep-groove ring [J]. Transactions of Nonferrous Metals Society of China, 2012, 22(S2): s247-s253.
  • 5KALIDlNDJ S R, ANAND L. An approximate procedure for predicting the evolution of crystallographic texture in bulk deformation processing of FCC metals [J]. International Journal of Mechanical Sciences, 1992,34(4): 309-329.
  • 6LI H W, YANG H, SUN Z C. A robust integration algorithm for implementing rate dependent crystal plasticity into explicit finite element method [J]. International Journal of Plasticity, 2008, 24(2): 267-288.
  • 7RAPHANEL J L, RAVICHANDRAN G, LEROY Y M. Three-dimensional rate-dependent crystal plasticity based on Runge-Kutta algorithms for update and consistent linearization [J]. International Journal of Plasticity, 2004, 41(22-23): 5995-6021.
  • 8PEIRCE D, ASARO R J, NEEDLEMAN A. Material rate dependence and localized deformation in crystalline solids [J]. Acta Metallurgica, 1983,31(12): 1951-1976.
  • 9GRUJICIC M, BATCHU S. Crystal plasticity analysis of earing in deep-drawn OFHC copper cups [J]. Journal of Materials Science, 2002,37:753-764.
  • 10TAYLOR G I. Plastic strain in metals [J]. Journal of the Institute of Metals, 1938, 62: 307-324.

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