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Influence of extruding temperature and heat treatment process on microstructure and mechanical properties of three structures containing Mg-Li alloy bars

机译:挤压温度和热处理工艺对三种含Mg-Li合金棒的组织的组织和力学性能的影响

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摘要

AbstractThe Mg-Li alloy bars with density of 1.38g/cm3as well as ultimate tensile strength of 329.2MPa were fabricated. Simultaneously, an industrial process with convenience and low cost was developed. In the cast alloys, hcp-Mg was transformed gradually into bcc-Li with increasing Li content. During extruding at different temperatures, the dynamic recrystallization (DRX) in Mg-8Li-5Al-2Zn-0.5Y was weaker than Mg-5Li-5Al-2Zn-0.5Y and Mg-11.4Li-5Al-2Zn-0.5Y due to the mutual limitation between hcp-Mg (α) and bcc-Li (β). In the annealing process, abnormal grain growth in Mg-11.4Li-5Al-2Zn-0.5Y was found at 573K, and a kind of regular dendritic structure was discovered in the coarse grains at 593K. Additionally, a sort of solid solution strengthening behavior in bcc-Li was observed and enhanced remarkably the alloy strength (increased by ~160MPa in maximum). Through controlling cooling velocity, a precipitation behavior could be achieved in the alloys. Through mathematical modeling with high accuracy, the relationships among microstructural evolution and alloy properties in the solid solution and precipitation processes were quantitatively analyzed and determined.
机译: 摘要 密度为1.38g / cm 3 以及极限拉伸强度的Mg-Li合金棒强度为329.2MPa。同时,开发了一种方便且低成本的工业方法。在铸造合金中,随着Li含量的增加,hcp-Mg逐渐转变为bcc-Li。 Mg-8Li-5Al-2Zn-0.5Y的动态重结晶(DRX)较Mg-5Li-5Al-2Zn-0.5Y和Mg-11.4Li-5Al-2Zn-0.5Y弱,原因是hcp-Mg(α)和bcc-Li(β)之间的相互限制。在退火过程中,Mg-11.4Li-5Al-2Zn-0.5Y在573K处发现了异常的晶粒长大,在593K处发现了粗晶粒中的规则的树枝状结构。此外,观察到一种在bcc-Li中的固溶强化行为,并显着增强了合金强度(最大增加了〜160MPa)。通过控制冷却速度,可以在合金中实现析出行为。通过高精度数学建模,定量分析并确定了固溶体和沉淀过程中微观组织演变与合金性能之间的关系。

著录项

  • 来源
    《Materials Science and Engineering》 |2018年第17期|266-280|共15页
  • 作者单位

    Key Lab of Electromagnetic Processing of Materials, Ministry of Education, Northeastern University;

    Key Lab of Electromagnetic Processing of Materials, Ministry of Education, Northeastern University;

    Department of Metallurgical, Materials, and Biomedical Engineering, University of Texas at El Paso;

    State Key Lab of Rolling and Automation, Northeastern University;

    Key Lab of Electromagnetic Processing of Materials, Ministry of Education, Northeastern University;

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

    Mg-Li alloy; Strengthening; Mathematical modeling;

    机译:镁锂合金强化数学建模;

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