Effect of Multidirectional Forging with Decreasing Temperature on the Microstructure and Microhardness of the Aluminum-Magnesium-Scandium-Zirconium Alloy

被引:2
|
作者
Sitdikov, O. S. [1 ]
Avtokratova, E., V [1 ]
Murzinova, M. A. [1 ]
Markushev, M., V [1 ]
机构
[1] Russian Acad Sci, Dept Light Alloys, Inst Met Superplast Problems, 39 St Khalturin Str, Ufa 450001, Russia
关键词
aluminum alloy; multidirectional forging; microstructural evolution; nanocrystalline structure; SEVERE PLASTIC-DEFORMATION; STRAIN-RATE SUPERPLASTICITY; MG-SC ALLOY; MECHANICAL-PROPERTIES; GRAIN-REFINEMENT; RECRYSTALLIZATION; AZ31; EVOLUTION; BEHAVIOR; AL3SC;
D O I
10.1520/MPC20190006
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Evolution of the microstructure and microhardness of the cast and homogenized aluminum alloy 1570C (aluminum [Al]-5 magnesium [Mg]-0.18 manganese [Mn]-0.2 scandium [Sc]-0.08 zirconium [Zr], wt. %) were studied under multidirectional forging (MDF) with decreasing the temperature. Sequential compression passes were performed at a strain rate of 10(-2) s(-1) with90 degrees changing of the loading axes from pass to pass; with the strain per pass of Delta e = 0.7 and the 25 degrees C decrease of temperature in each pass, starting from 450 degrees C (T= 0.8 T-m). It has been shown that the alloy ductility was sufficient for straining the samples without cracking up to the total strain of Sigma e =10.5 at 100 degrees C (about 0.4 T-m). In the initial state, the alloy possessed a coarse-grained structure with a grain size of about 25 pfn and a uniform distribution of the Al-3(Sc,Zr) nanoscale aluminides. MDF led to a continuous grain refinement. At relatively low strains, Sigma e <= 4.2 (and high temperatures, T >= 325 degrees C), new grains were evolved mainly in the mantle areas of initial grains, resulting in the formation of a bimodal (sub)grain structure, which persisted up to Sigma e = 8.4 (T= 175 degrees C). During further MDF, the alloy structure became more homogeneous and fine-grained, and at Sigma e =10.5 (T= 100 degrees C), it almost completely transformed into a nanocrystalline grain structure with a crystallite size of 100-150 nm, stabilized by na nod ispersed Al-3(Sc,Zr) precipitates. The average size of the deformation-induced (sub)grains in the whole range of strains (temperatures) studied obeyed a power-law function of the flow stresses with the exponent close to -0.75. The microhardness testing showed that MDF did not lead to the notable alloy hardening in the samples deformed at relatively high temperatures (T> 325 degrees C) and low strains (Sigma e <4.2). With further processing, in contrast, a significant (about 1.5 times) hardness increase took place in accordance with the Hall-Petch relationship.
引用
收藏
页码:101 / 116
页数:16
相关论文
共 50 条
  • [1] Al-Mg-Sc-Zr (Aluminum-Magnesium-Scandium-Zirconium)
    V. Raghavan
    Journal of Phase Equilibria and Diffusion, 2008, 29 : 192 - 193
  • [2] Al-Mg-Sc-Zr (Aluminum-Magnesium-Scandium-Zirconium)
    Raghavan, V.
    JOURNAL OF PHASE EQUILIBRIA AND DIFFUSION, 2008, 29 (02) : 192 - 193
  • [3] Grain refinement in magnesium alloy AZ31 during multidirectional forging under decreasing temperature conditions
    Xing, J
    Yang, XY
    Miura, H
    Sakai, T
    MAGNESIUM - SCIENCE, TECHNOLOGY AND APPLICATIONS, 2005, 488-489 : 597 - 600
  • [4] The Effect of Multidirectional Forging on the Deformation and Microstructure of the Al–Mg Alloy
    M. S. Kishchik
    A. D. Kotov
    D. O. Demin
    A. A. Kishchik
    S. A. Aksenov
    A. V. Mikhaylovskaya
    Physics of Metals and Metallography, 2020, 121 : 597 - 603
  • [5] Microstructures and mechanical properties of AZ91 magnesium alloy processed by multidirectional forging under decreasing temperature conditions
    Nie, K. B.
    Wang, X. J.
    Deng, K. K.
    Xu, F. J.
    Wu, K.
    Zheng, M. Y.
    JOURNAL OF ALLOYS AND COMPOUNDS, 2014, 617 : 979 - 987
  • [6] Microstructure and tensile properties of SiC nanoparticles reinforced magnesium matrix composite prepared by multidirectional forging under decreasing temperature conditions
    Nie, K. B.
    Wang, X. J.
    Xu, F. J.
    Wu, K.
    Zheng, M. Y.
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2015, 639 : 465 - 473
  • [7] The Effect of Multidirectional Forging on the Deformation and Microstructure of the Al-Mg Alloy
    Kishchik, M. S.
    Kotov, A. D.
    Demin, D. O.
    Kishchik, A. A.
    Aksenov, S. A.
    Mikhaylovskaya, A. V.
    PHYSICS OF METALS AND METALLOGRAPHY, 2020, 121 (06): : 597 - 603
  • [8] Microstructure, Texture, and Mechanical Properties of AM60 Magnesium Alloy Processed by Extrusion and Multidirectional Forging
    Salevati, M. A.
    Akbaripanah, F.
    Mahmudi, R.
    JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2019, 28 (05) : 3021 - 3030
  • [9] Microstructure, Texture, and Mechanical Properties of AM60 Magnesium Alloy Processed by Extrusion and Multidirectional Forging
    M. A. Salevati
    F. Akbaripanah
    R. Mahmudi
    Journal of Materials Engineering and Performance, 2019, 28 : 3021 - 3030
  • [10] Effect of Multidirectional Forging on the Microstructure and Mechanical Properties of the Al–Mg–Mn–Cr Alloy
    A. A. Kishchik
    M. S. Kishchik
    A. D. Kotov
    A. V. Mikhaylovskaya
    Physics of Metals and Metallography, 2020, 121 : 489 - 494