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首页> 外文期刊>International Journal of Heat and Mass Transfer >Multi-scale simulation of grain/sub-grain structure evolution during solidification in laser welding of aluminum alloys
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Multi-scale simulation of grain/sub-grain structure evolution during solidification in laser welding of aluminum alloys

机译:铝合金激光焊接凝固过程中晶粒/亚晶粒组织演变的多尺度模拟

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摘要

This work developed a multi-scale model, combining the macro-scale model for heat transfer and fluid flow with the micro-scale phase-field model for polycrystalline alloy solidification, to investigate the grain/sub-grain structure evolution during solidification in laser welding of 5083 Al sheets. Special attentions were paid to the planar to cellular and dendritic growth. Results demonstrated that, during planar-to-cellular transition, the initial planar instability primarily resulted from the rapid change in growth rate. The surface tension anisotropy can significantly affect the initial planar instability. With the increase of misorientation angle, the interfacial stiffness tended to increase, which enhanced the stabilizing effects of surface tension and thus made the S/L interface more and more stable. Furthermore, Results elucidated how solidification morphology develops during cellular-to-dendritic transition. Two important phenomena, namely, tertiary branching and tip-splitting, which were responsible for the decrease in primary dendritic arm spacing, were discovered. Finally, results illustrated how multiple grains with various orientations grow in competition in laser weld pool. Two competitive mechanisms of grain growth were revealed, namely, lateral expansion of favorably-oriented (FO) grain and blocking its unfavorably-oriented (UO) grain neighbors, and the elimination of UO grain by FO grain at the converging grain boundary.
机译:这项工作开发了一个多尺度模型,将传热和流体流动的宏观模型与多晶合金凝固的微观相场模型相结合,以研究激光焊接凝固过程中晶粒/亚晶粒结构的演变5083铝板。特别注意了平面到细胞和树突状生长。结果表明,在从平面到细胞的过渡过程中,最初的平面不稳定性主要是由生长速率的快速变化引起的。表面张力各向异性会严重影响初始平面不稳定性。随着错位角的增加,界面刚度趋于增加,这增强了表面张力的稳定作用,从而使S / L界面越来越稳定。此外,结果阐明了细胞形态到树突状转变过程中凝固形态的发展。发现了两个重要现象,即第三级分支和尖端分裂,这是初级树突臂间距减小的原因。最后,结果说明了在激光焊接熔池的竞争中,不同方向的多个晶粒如何生长。揭示了晶粒长大的两个竞争机制,即取向良好的(FO)晶粒的横向扩展和阻塞其取向不利的(UO)晶粒邻域,以及在会聚晶界处由FO晶粒消除UO晶粒。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2020年第3期|119252.1-119252.16|共16页
  • 作者

  • 作者单位

    The State Key Laboratory of Digital Manufacturing Equipment and Technology School of Mechanical Science and Engineering Huazhong University of Science & Technology 430074 Wuhan PR China Department of Materials Science and Engineering University of Virginia 395 McCormick Road Charlottesville VA 22904-4745 USA;

    The State Key Laboratory of Digital Manufacturing Equipment and Technology School of Mechanical Science and Engineering Huazhong University of Science & Technology 430074 Wuhan PR China;

    Department of Materials Science and Engineering University of Virginia 395 McCormick Road Charlottesville VA 22904-4745 USA Key Laboratory for Liquid-Solid Structural Evolution and Processing of Materials Ministry of Education Shandong University 250061 Jinan PR China;

    Key Laboratory for Liquid-Solid Structural Evolution and Processing of Materials Ministry of Education Shandong University 250061 Jinan PR China;

    School of Materials Science and Engineering Huazhong University of Science & Technology 430074 Wuhan PR China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Multi-scale simulation; Laser welding; Aluminum alloy; Solidification microstructure; Phase-field method;

    机译:多尺度模拟激光焊接;铝合金;凝固组织;相场法;

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