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首页> 外文期刊>Materials Science and Engineering >Influence of multi-channel spiral twist extrusion (MCSTE) processing on structural evolution, crystallographic texture and mechanical properties of AA1100
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Influence of multi-channel spiral twist extrusion (MCSTE) processing on structural evolution, crystallographic texture and mechanical properties of AA1100

机译:多通道螺旋扭曲挤出(MCSTE)工艺对AA1100的组织演变,晶体织构和力学性能的影响

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摘要

Recently, several severe plastic deformation (SPD) techniques have been developed with the aim of incorporating grain refinement and strengthening metal forming technology into the industry without dimensional changes. Multi-channel spiral twist extrusion (MCSTE) was innovated and patented in an attempt to provide an effective, cost-saving SPD process that would attract the industrial uptake of the renowned twist extrusion (TE) method. The MCSTE process is based on the use of customized stacked disks that host non-circular cross-sectioned billets extruded through a die with a twist angle (β). Hence, an empirical study was conducted on AA1100 to investigate the influence of 4 successive MCSTE passes on the mechanical behavior and microstructural evolution of the extrudates compared to the as-received (AR) condition. Electron backscatter diffraction (EBSD) was employed for mapping the structural evolution, misorientation angles and the texture developed as a function of the processing passes. Additionally, hardness and tensile properties were evaluated and correlated with the EBSD findings. EBSD analysis revealed the formation of almost equiaxed grains after 1 pass, which were evolved into elongated grains aligned at approximately 45° relative to the extrusion direction after 2-passes. Moreover, MCSTE processing 1-pass produced a structure with 64% and 36% HAGB and LAGB, respectively, while 2-passes via MCSTE increased HAGBs to 80%. Processing 4-passes increased the amount of recovery depicted by the percentage of LABs within the grains, which was associated with a noticeable increase in the fraction of fine grains < 8 µm. MCSTE produced a very strong texture that increased in intensity with an increasing number of passes. The results demonstrated a significant increase of 73% and 40% in the average hardness and tensile strength, respectively, with an increasing number of passes up to 4, which was coupled with an insignificant 2% reduction in ductility. The displayed results validated the effectiveness of MCSTE as an SPD tool for grain refinement with a favorable potential for industrial applications.
机译:近来,已经开发了几种严重的塑性变形(SPD)技术,目的是在不改变尺寸的情况下将晶粒细化和加强金属成形技术纳入工业。创新并获得专利的多通道螺旋扭曲挤出(MCSTE)旨在提供一种有效,节省成本的SPD工艺,该工艺将吸引著名的扭曲挤出(TE)方法的工业应用。 MCSTE工艺基于使用定制的堆叠圆盘,这些圆盘容纳非圆形横截面坯料,这些非圆形横截面坯料通过具有扭曲角(β)的模具挤出。因此,在AA1100上进行了一项实证研究,以研究连续4次MCSTE传递与挤出(AR)条件相比对挤出物的力学行为和微观结构演变的影响。电子背散射衍射(EBSD)用于绘制结构演变,取向错误的角度以及根据加工道次形成的织构图。此外,还评估了硬度和拉伸性能,并将其与EBSD结果相关联。 EBSD分析显示,经过1遍后几乎形成等轴晶粒,经过2遍后演变成相对于挤出方向成大约45°排列的细长晶粒。此外,MCSTE处理1次通过可以产生具有64%和36%的HAGB和LAGB的结构,而通过MCSTE进行2次通过可以将HAGBs增加到80%。加工4次通过增加了以颗粒中LAB百分比表示的回收量,这与<8μm的细颗粒比例显着增加有关。 MCSTE产生了非常强的质感,随着通过次数的增加强度会增加。结果表明,平均硬度和抗拉强度分别显着提高了73%和40%,通过次数增加至4次,同时延展性降低了2%。显示的结果证实了MCSTE作为SPD工具进行晶粒细化的有效性,具有工业应用潜力。

著录项

  • 来源
    《Materials Science and Engineering》 |2018年第8期|166-175|共10页
  • 作者单位

    Mechanical Engineering Department, The American University in Cairo;

    Mechanical Engineering Department, Unayzah College of Engineering, Qassim University,Mechanical Engineering Department, Suez Canal University;

    Suez and Sinai Metallurgical and Materials Research Center of Scientific Excellence (SSMMR-CSE), Suez University,Metallurgical and Materials Engineering Department, Faculty of Petroleum and Mining Engineering, Suez University,Mechanical Engineering Department, The British University in Egypt;

    Suez and Sinai Metallurgical and Materials Research Center of Scientific Excellence (SSMMR-CSE), Suez University,Metallurgical and Materials Engineering Department, Faculty of Petroleum and Mining Engineering, Suez University;

    Mechanical Engineering Department, The American University in Cairo;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Severe plastic deformation; Twist extrusion; Grain refinement; Texture EBSD; Mechanical and fracture behavior;

    机译:严重的塑性变形;扭曲挤压;晶粒细化;纹理EBSD;机械和断裂行为;

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