Effect of stacking fault energy on mechanical properties of nanostructured FCC materials processed by the ARB process

被引:51
作者
Jamaati, Roohollah [1 ]
Toroghinejad, Mohammad Reza [2 ]
机构
[1] Islamic Azad Univ, Young Researchers & Elite Club, Ayatollah Amoli Branch, Amol, Iran
[2] Isfahan Univ Technol, Dept Mat Engn, Esfahan 8415683111, Iran
来源
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING | 2014年 / 606卷
关键词
Nanostructured materials; Stacking fault energy; Accumulative roll bonding process; ROLL BONDING PROCESS; SEVERE PLASTIC-DEFORMATION; HIGH-PRESSURE TORSION; ULTRAFINE-GRAINED CU; ZN ALLOYS; FOLDING PROCESS; STRAIN-RATE; COMPOSITE; COPPER; REFINEMENT;
D O I
10.1016/j.msea.2014.03.126
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
In the present work, the effect of stacking fault energy on the mechanical properties of aluminum, copper, and brass fabricated via the accumulative roll bonding (ARB) process was investigated. Mechanical properties and microstructural evaluation of the samples were evaluated by tensile and hardness tests and also transmission electron microscopy (TEM). It was found that differences in the mechanical properties during the ARB process of aluminum, copper, and brass were completely related to their stacking fault energies (SFEs). The tensile strength of the brass was much higher than that of the copper and aluminum at all ARB cycles. This was attributed to smaller grain size, higher dislocation density and higher twin density of the brass during the ARB process. It was realized that the ductility of the brass was higher than that of the copper for all ARB cycles. This was related to higher twin density in the brass sample. The hardness results were indicated that the saturation of dislocation density that occurred at the second, third, and fifth cycles for aluminum, copper, and brass, respectively. In fact, when the SFE was decreased, the number of ARB cycles for saturation of hardness increased. (C) 2014 Elsevier B.V. All rights reserved.
引用
收藏
页码:443 / 450
页数:8
相关论文
共 37 条
  • [1] Role of severe plastic deformation on the formation of nanograins and nano-sized precipitates in Fe-Ni-Mn steel
    Ahmadabadi, M. Nili
    Shirazi, H.
    Ghasemi-Nanesa, H.
    Nedjad, S. Hossein
    Poorganji, B.
    Furuhara, T.
    [J]. MATERIALS & DESIGN, 2011, 32 (06) : 3526 - 3531
  • [2] The influence of stacking fault energy on the mechanical properties of nanostructured Cu and Cu-Al alloys processed by high-pressure torsion
    An, X. H.
    Lin, Q. Y.
    Wu, S. D.
    Zhang, Z. F.
    Figueiredo, R. B.
    Gao, N.
    Langdon, T. G.
    [J]. SCRIPTA MATERIALIA, 2011, 64 (10) : 954 - 957
  • [3] Current issues in recrystallization: a review
    Doherty, RD
    Hughes, DA
    Humphreys, FJ
    Jonas, JJ
    Jensen, DJ
    Kassner, ME
    King, WE
    McNelley, TR
    McQueen, HJ
    Rollett, AD
    [J]. MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 1997, 238 (02): : 219 - 274
  • [4] Role of stacking fault energy on the deformation characteristics of copper alloys processed by plane strain compression
    El-Danaf, Ehab A.
    Al-Mutlaq, Ayman
    Soliman, Mahmoud S.
    [J]. MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2011, 528 (25-26): : 7579 - 7588
  • [5] Twinning and dislocation activity in silver processed by severe plastic deformation
    Gubicza, Jeno
    Chinh, N. Q.
    Labar, J. L.
    Hegedues, Z.
    Langdon, T. G.
    [J]. JOURNAL OF MATERIALS SCIENCE, 2009, 44 (06) : 1656 - 1660
  • [6] The effect of impurity level on ultrafine-grained microstructures and their stability in low stacking fault energy silver
    Hegedus, Zoltan
    Gubicza, Jeno
    Kawasaki, Megumi
    Chinh, Nguyen Q.
    Fogarassy, Zsolt
    Langdon, Terence G.
    [J]. MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2011, 528 (29-30): : 8694 - 8699
  • [7] Humphreys F.J., 2005, RECRYSTALLIZATION RE
  • [8] Effect of stacking fault energy on nanostructure formation under accumulative roll bonding (ARB) process
    Jamaati, Roohollah
    Toroghinejad, Mohammad Reza
    Edris, Hossein
    [J]. MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2013, 578 : 191 - 196
  • [9] Investigation of nanostructured Al/Al2O3 composite produced by accumulative roll bonding process
    Jamaati, Roohollah
    Toroghinejad, Mohammad Reza
    Dutkiewicz, Jan
    Szpunar, Jerzy A.
    [J]. MATERIALS & DESIGN, 2012, 35 : 37 - 42
  • [10] Strength enhancement of a biomedical titanium alloy through a modified accumulative roll bonding technique
    Kent, Damon
    Wang, Gui
    Yu, Zhentao
    Ma, Xiqun
    Dargusch, Matthew
    [J]. JOURNAL OF THE MECHANICAL BEHAVIOR OF BIOMEDICAL MATERIALS, 2011, 4 (03) : 405 - 416