4.7 Article

Hot deformation behavior and processing map of a superlight dual-phase Mg-Li alloy

期刊

JOURNAL OF ALLOYS AND COMPOUNDS
卷 766, 期 -, 页码 460-469

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.jallcom.2018.07.024

关键词

Mg-Li alloy; Constitutive relationship; Processing map; Texture evolution

资金

  1. Fundamental Research Funds for the Central Universities [2018CDXYCL0018, 2018CDJDCL0020]
  2. National Natural Science Foundation [51601024, 51701026]
  3. National Key Research, Development Program of China plan [2016YFB0700403]
  4. Chongqing Research Program of Basic Research and Frontier Technology [cstc2016jcyjA0418]

向作者/读者索取更多资源

Hot deformation behavior of a superlight dual phase Mg-9Li-3AI-2Y alloy was investigated by developing constitutive equations and constructing processing maps. Constitutive relationship was established by the prediction of materials constants (alpha, beta, n, Q and InA) based on true stress-strain curves. Processing maps were constructed for Mg-9Li-3AI-2Y alloy based on dynamic materials model (DMM). The instability domains occurred over a narrow temperature range of 423-450 K and strain rate range of 0.01-1s(-)(1), and over a temperature range of 560-573 K and close to strain rate of 1s (-1). The twinning in alpha-Mg phase and cracks in the matrix were observed in the instability domains, the refined dynamic recrystallization (DRX) grains were formed in the regions with high efficiency values. It is undesirable to deform at high strain rates for mechanical properties because of the instability. Dynamic recrystallization occurs first in beta-Li phases, and the Al2Y particles were conducive to the DRX process with particle stimulated nucleation effect. The DRX process of a-Mg phase was retarded by beta-Li phase. The DRXed grains of 13-Li phase showed a random texture, while the basal poles of alpha-Mg phase rotated towards the normal direction, which can enhance the further deformation. Based on constitutive relationship, processing map and texture evolution, the Mg-9Li-3Al-2Y alloy is easy to suffer from deformation at a wide range of temperatures and strain rates. (C) 2018 Elsevier B.V. All rights reserved.

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