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Grain refinement effects on the strain rate sensitivity and grain boundary sliding in partially solidified Al-5 wt%Mg alloy

机译:细化对部分凝固的Al-5 wt%Mg合金的应变率敏感性和晶界滑动的影响

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摘要

This study investigated a mechanism of reducing solidification cracking susceptibility by grain refinement. Previously, the occurrence of grain boundary sliding (GBS) is implied as one mechanism, which is known for the characteristics of superplastic deformation. To verify GBS occurrence during solidification of an Al-5 wt%Mg alloy, the effects of refinement on the true stress-true strain curve and the effective power-law coefficient n_(eff) (the reciprocal of the strain rate sensitivity) were investigated in a partially solidified state. Furthermore, the contribution of GBS to deformation was examined using the index ξ_(GBS) defined in the research field of superplasticity. The results are following. (1) The grain refined structure elongation is greater than that in the coarse grain structure regardless of the solid fraction. Greater elongation is expected to result from both lower value of the coefficient n_(eff) and the higher contribution of the GBS, which provide more uniform deformation. (2) Maximum elongation of up to 20% was found at 480 ℃ (f_s: 0.939) in the grain refined structure. Based on the knowledge of superplastic behavior, the values of both n_(eff)≈2 and ξ_(GBS)≈70% at the temperature indicates superplastic-like deformation during the solidification, reducing solidification cracking susceptibility by grain refinement.
机译:本研究研究了通过细化晶粒降低凝固裂纹敏感性的机理。以前,晶界滑动(GBS)的发生被暗示为一种机制,该机制以超塑性变形的特征而闻名。为了验证在Al-5 wt%Mg合金凝固过程中发生GBS,研究了细化对真实应力-真实应变曲线和有效幂律系数n_(eff)的影响(应变率灵敏度的倒数)处于部分固化状态。此外,使用超塑性研究领域中定义的指标ξ_(GBS)检验了GBS对变形的贡献。结果如下。 (1)与固体成分无关,晶粒细化组织的伸长率比粗粒组织大。系数n_(eff)的较低值和GBS的较高贡献均有望产生更大的伸长率,从而提供更均匀的变形。 (2)在480℃(f_s:0.939)下,晶粒细化结构的最大伸长率高达20%。根据对超塑性行为的了解,在温度下n_(eff)≈2和ξ_(GBS)≈70%的值都表明了凝固过程中的超塑性状变形,从而通过晶粒细化降低了凝固裂纹敏感性。

著录项

  • 来源
    《Materials Science and Engineering 》 |2016年第14期| 417-425| 共9页
  • 作者单位

    Department of Modern Mechanical Engineering, Graduate School of Waseda University, 3-4-1 Shinjyuku-ku Okubo, Tokyo 169-8555, Japan;

    Department of Modern Mechanical Engineering, Graduate School of Waseda University, 3-4-1 Shinjyuku-ku Okubo, Tokyo 169-8555, Japan,Nikkei MC Aluminum Co., Ltd., 2-6-2, Kaji-cho, Chiyoda-ku, Tokyo 101-0044, Japan;

    Department of Modern Mechanical Engineering, Graduate School of Waseda University, 3-4-1 Shinjyuku-ku Okubo, Tokyo 169-8555, Japan,Mitsubishi Heavy Industries, Ltd., 16-5 Konan 2-chome, Minato-ku, Tokyo 108-8215, Japan;

    Department of Modern Mechanical Engineering, Graduate School of Waseda University, 3-4-1 Shinjyuku-ku Okubo, Tokyo 169-8555, Japan;

    Department of Modern Mechanical Engineering, Graduate School of Waseda University, 3-4-1 Shinjyuku-ku Okubo, Tokyo 169-8555, Japan,Kagami Memorial Research Institute for Materials Science and Technology, Waseda University, 2-8-26, Nishi-Waseda, Shinjyuku-ku, Tokyo 169-0051, Japan;

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

    Hot tearing; Grain refinement; Al-Mg alloy; The strain rate sensitivity; Semi-solid state;

    机译:热撕;晶粒细化;铝镁合金;应变率灵敏度;半固态;

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