期刊文献+

基于DEFORM的正挤结合侧挤大变形工艺研究 被引量:3

Investigation of large deformation process of forward extrusion integrated with lateral extrusion based on DEFORM finite element code
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摘要 等径角挤压被认为是最具工业化应用前景的大塑性变形技术之一,但其局限限制了其工业化应用.文中在常规等径角挤压技术的基础上提出了一种正挤压结合侧向挤压新工艺,采用DEFORM-2D软件对该新工艺进行了数值模拟.结果表明:这种新型工艺具有单道次变形量大且均匀的特点,为高效制备大尺度块体超细晶材料提供了新途径,但挤压时所需载荷也较大.因此,需通过进一步的工艺参数优化,为模具设计和选材提供一定的保障. Equal channel angular pressing ( ECAP ) is regarded as one of the most promising large plastic de-formation processes .But its localization limits the industrial application of this process .A novel process named forward extrusion integrated with lateral extrusion ( FELE) was presented based on conventional ECAP .Numeri-cal simulation was conducted by using DEFORM -2D finite element code .The results show that the new process is characterized by large and even strain , which provides an approach for fabricating bulk ultra-fined materials ef-ficiently .But the extrusion load is higher .Therefore , further process parameters optimization should be conduc-ted to provide protection for die design and material selection .
出处 《江苏科技大学学报(自然科学版)》 CAS 2013年第6期536-539,共4页 Journal of Jiangsu University of Science and Technology:Natural Science Edition
基金 江苏科技大学博士启动基金 江苏省高等学校大学生实践创新训练项目 江苏科技大学本科生创新计划项目
关键词 大变形 正挤结合侧挤 等效应变 large deformation forward extrusion integrated with lateral extrusion effective strain
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参考文献9

  • 1汪程鹏,李付国,陈波,袁战伟,陆红亚.块状超细晶材料的剧烈塑性变形制备技术(英文)[J].稀有金属材料与工程,2012,41(6):941-946. 被引量:12
  • 2Song M, Sun C, Jang J, et al. Microstructure refine- ment and strengthening mechanisms of a 12Cr ODS steel processed by equal channel angular extrusion [ J ]. Jour- nal of Alloys and Compounds,2013, 577 : 247 -256.
  • 3Bian M Z, Li Y L, Mathesh M, et al. Microstructure and texture evolutions and mechanical properties in pure copper by equal-channel angular pressing[ J ]. Journal of Alloys and Compounds,2013, 578 : 369 - 372.
  • 4Xu Cheng, Schroeder S, Berbon P B, et al. Principles of ECAP - Conform as a continuous process for achie- ving grain refinement:application to an aluminum alloy [ J]. Acta Materialia,2010, 58(4) : 1379 - 1386.
  • 5Chen Qiang, Zhao Zhixiang, Shu Dayu, et al. Micro- structure and mechanical properties of AZgl D magnesi- um alloy prepared by compound extrusion [ J ]. Materials Science and Engineering A ,2011, 528 : 3930 - 3934.
  • 6Liu Z Y, Liang G X, WangE D, et al. The effect of cumulative large plastic strain on the structure and prop- erties of a Cu - Zn alloy [ J ]. Materials Science and En- gineering A, 1998, 242 ( 1 - 2) : 137 - 140.
  • 7Yoon S C, Jeong H G, Lee S, et al. Analysis of plastic deformation behavior during back pressure equal channel angular pressing by the finite element method[ J]. Com- putational Materials Science .2013.77 : 202 - 207.
  • 8石凤健,郑富龙,邹妮康.模具外侧圆角对缩径侧向挤压变形影响的有限元分析[J].江苏科技大学学报(自然科学版),2012,26(4):346-349. 被引量:2
  • 9Balasundar I, Raghu T. Effect of friction model in nu- merical analysis of equal channel angular pressing process[J]. Materials & Design,2010, 31 ( 1 ) : 449 - 457.

二级参考文献9

  • 1刘祖岩,王尔德.挤压方法的分类及侧向挤压的特点分析[J].哈尔滨工业大学学报,2007,39(3):409-411. 被引量:2
  • 2Valiev R Z, Langdon T G. Principles of equal-channel angular pressing as a processing tool for grain refinement [ J]. Progress in Materials Science, 2006, 51 (7) : 881 - 981.
  • 3Kim H S. On the effect of acute angles on deformation homogeneity in equal channel angular pressing [ J ]. Ma- terials Science and Engineering, 2006, A 430(1/2) : 346 - 349.
  • 4T6th L S, Lapovok R, Hasani A, et al. Non-equal chan- nel angular pressing of aluminum alloy [ J ]. Scripta Mate- rialia, 2009, 61(12): 1121-1124.
  • 5Yoon S C, Horlta Z, Kim H S. Finite element analysis of plastic deformation behavior during high pressure torsion processing [ J ]. Journal of Materials Processing Technolo- gy, 2008, 201 (1/3) : 32 - 36.
  • 6Shi F J, Wang L G. Finite element analysis of optimum back pressure during equal channel angular pressing [ J ]. Materials Science Forum, 2008, 575/578 : 311 - 315.
  • 7石凤健,江理建,王亮,王莹,王伟,刘智安.背压对等径角挤压坯料变形的影响[J].江苏科技大学学报(自然科学版),2009,23(5):395-398. 被引量:3
  • 8刘天模,刘世宇,彭天成,刘建忠,刘宇,潘复生.AZ31镁合金变通道角挤压工艺[J].材料热处理学报,2009,30(5):64-67. 被引量:14
  • 9Zengqi ZHAO Lab.of Physics,Baotou Research Institute of Rare Earth,Baotou,014010,ChinaFeixia CHEN Dazhi YANG Dept.of Mater.Eng.,Dalian University of Technology,Dalian,116024,ChinaEr BAO Dept.of Mater.Eng.,Yanshan University,Qinhuangdao,066004,China.Isothermal Aging Kinetics in CuZnAl Shape Memory Alloy[J].Journal of Materials Science & Technology,1993,9(3):172-176. 被引量:2

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