Effect of deformation temperature on strain localization phenomena in an austenitic Fe-30Mn-6.5Al-0.3C low-density steel

被引:10
|
作者
Gutierrez-Urrutia, Ivan [1 ]
Shibata, Akinobu [1 ]
机构
[1] Natl Inst Mat Sci, Res Ctr Struct Mat, 1-2-1 Sengen, Tsukuba 3050047, Japan
关键词
Strain localization; Fe-Mn-Al-C low-density steel; Austenitic steels; Strain-hardening; Electron channeling contrast imaging (ECCI); ELECTRON CHANNELING CONTRAST; STACKING-FAULT ENERGY; INTERSTITIAL-FREE STEEL; GRAIN-ORIENTATION; FE-MN; MECHANICAL-PROPERTIES; FCC METALS; MICROSTRUCTURE EVOLUTION; DISLOCATION SUBSTRUCTURE; PLASTIC-DEFORMATION;
D O I
10.1016/j.actamat.2023.119566
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We have investigated the influence of the deformation temperature from 25 degree celsius (RT) to-196 degree celsius on the dislocation structures associated with strain localization phenomena in an austenitic Fe-30Mn-6.5Al-0.3C (wt.%) low-density steel by electron channeling contrast imaging (ECCI), electron backscatter diffraction (EBSD), and bright-field transmitted forescattered electron imaging ((BF) t-FSEI) techniques. The characteristics of the dislocation structures were evaluated on the main texture components, i.e. <111>//tensile axis, <112>//tensile axis, and <001>//tensile axis directions. The inhomogeneous character of the plastic behavior is promoted upon cryogenic deformation due to the formation of dislocation structures associated with strain localization, namely microbands (MBs) and deformation bands (DBs). ECCI analysis of the dislocation structure reveals that the deformation temperature has a strong influence on the thermal-assisted dislocation processes controlling the dislocation configurations and MB formation mechanisms. The MB nucleation mechanism evolves from a cross-slip-assisted mechanism at RT deformation conditions to a slip band-assisted mechanism at cryogenic deformation temperatures. This effect has a profound effect on the grain orientation dependence of the MB structure but not on its crystallographic alignment. On the other hand, cryogenic deformation temperatures (-196 degree celsius) enhance the material's mechanical strength and ductility due to the activation of deformation twinning, which is associated with the reduction of the stacking fault energy. We find that MBs have a small contribution to strain-hardening and ductility due to the small mechanical resistance of these dislocation structures against the advance of deformation twins and dense dislocation layers, and the comparatively small plastic strain accommodated by them, respectively. These findings provide new insights into the microband-induced plasticity (MBIP) effect.
引用
收藏
页数:17
相关论文
共 50 条
  • [21] Effect of annealing temperature on the microstructure and tensile properties of Fe-10Mn-10Al-0.7C low-density steel
    Zhao, Chao
    Song, Renbo
    Zhang, Leifeng
    Yang, Fuqiang
    Kang, Tai
    MATERIALS & DESIGN, 2016, 91 : 348 - 360
  • [22] Enhanced mechanical properties of a Fe-Mn-Al-C austenitic low-density steel by increasing hot-rolling reduction
    Gao, Ziyuan
    Kang, Qingfeng
    An, Xueliang
    Wang, Hui
    Wang, Cunyu
    Cao, Wenquan
    MATERIALS CHARACTERIZATION, 2023, 204
  • [23] Precipitation transformation pathway and mechanical behavior of nanoprecipitation strengthened Fe-Mn-Al-C-Ni austenitic low-density steel
    An, Y. F.
    Chen, X. P.
    Mei, L.
    Ren, P.
    Wei, D.
    Cao, W. Q.
    JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY, 2024, 174 : 157 - 167
  • [24] THE ROLE OF DEFORMATION TWINNING ON MECHANICAL-PROPERTIES OF AN AUSTENITIC FE-30MN-1.2AL-0.3C ALLOY
    HAN, JM
    LIM, CY
    KIM, YG
    ACTA METALLURGICA ET MATERIALIA, 1991, 39 (09): : 2169 - 2175
  • [25] Research Situation of Service Performance of Fe-Mn-Al-C Austenitic Low Density Steel
    Kong L.
    Wang Y.
    Yang H.
    Peng Y.
    Jixie Gongcheng Xuebao/Journal of Mechanical Engineering, 2024, 60 (08): : 34 - 47
  • [26] Hot Deformation and Dynamic Recrystallization Behavior of Austenite-Based Low-Density Fe-Mn-Al-C Steel
    Li, Ya-Ping
    Song, Ren-Bo
    Wen, Er-Ding
    Yang, Fu-Qiang
    ACTA METALLURGICA SINICA-ENGLISH LETTERS, 2016, 29 (05) : 441 - 449
  • [27] Effect of Al Content and Solution Treatment on Tensile and Corrosion Resistance of Fe-Mn-Al-C Low-Density Steel
    Ma, Tao
    Li, Huirong
    Gao, Jianxin
    Li, Yungang
    TMS 2020 149TH ANNUAL MEETING & EXHIBITION SUPPLEMENTAL PROCEEDINGS, 2020, : 537 - 548
  • [28] Hot Deformation Behavior, Dynamic Recrystallization and Processing Map of Fe–30Mn–10Al–1C Low-Density Steel
    Jian Sun
    Jinghui Li
    Ping Wang
    Zhenyi Huang
    Transactions of the Indian Institute of Metals, 2022, 75 : 699 - 716
  • [29] Effect of hot rolling reduction and annealing treatment on grain boundary character distribution in austenitic low-density Fe-Mn-Al-C-Cr steel
    Liu, Jinxu
    Wu, Huibin
    Yang, Shanwu
    Yu, Xinpan
    Ding, Chao
    MATERIALS LETTERS, 2021, 285
  • [30] Effect of Solution Treatment Temperature on Microstructure and Properties of Fe-0.72Mn-3.7Al-0.53C Low-Density Cast Steel
    Song, Nan
    Zhao, Weimin
    Dong, Lishan
    Zhou, Xinshan
    METALS, 2022, 12 (08)