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Fluid flow and solute dilution in laser linear butt joining of 304SS and Ni

机译:304s和Ni激光线性对接加入的流体流动和溶质稀释

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摘要

Laser linear welding combined with advanced auto-control technology is a promising joint method of dissimilar metals. In this study, an improved three-dimensional model was developed to investigate the thermal behavior, fluid flow and concentration dilution during laser linear dissimilar welding of 304 stainless steel and nickel. The fluid flow and solidification behavior were presented in a 3D view to deeply study the thermal behavior and convection characteristics inside the melt pool. The relationship between dynamic characteristics and concentration dilution was studied numerically and experimentally, and the effects of welding speed, temperature coefficient of surface tension (TCST) and dynamic viscosity on mass transfer were also investigated. Larger cooling rate (GR) and smaller morphology parameter (G/R) were found at top area of the weld pool (WP). Elements from SS (Cr and Fe) were mainly mixed at front side, but Ni was mainly diluted at middle part. Resulting from the Marangoni convection, all the elements were mainly mixed at top area and then transported to the bottom. The redistribution of the species was also observed at each side, resulting in a relatively uniform distribution at each side. Nevertheless, the effects of welding speed, TCST and dynamic viscosity on solute dilution were simulated and proved non-negligible. Differences of solidification and dilution phenomenon were also observed between liner welding and spot welding. It was demonstrated the obtained results in this work provided a vital perspective in comprehending the heat and mass transfer phenomenon inside the melt pool during welding and additive manufacturing process.
机译:激光线性焊接联合先进的自动控制技术是一种有前途的不同金属的联合方法。在这项研究中,开发了一种改进的三维模型,以研究激光线性异常焊接在304不锈钢和镍的热行为,流体流动和浓度稀释。在3D视图中提出了流体流动和凝固行为,以深入研究熔池内的热行为和对流特性。还研究了动态特性与浓度稀释之间的关系,并研究了焊接速度,表面张力温度系数(TCST)和动态粘度对传质的影响。在焊接池(WP)的顶部区域发现更大的冷却速率(GR)和较小的形态参数(G / R)。来自SS(Cr和Fe)的元素主要在前侧混合,但Ni主要在中部稀释。由Marangoni对流引起的,所有元素主要在顶部区域混合,然后运输到底部。在每一侧也观察到物种的再分布,导致每侧的相对均匀的分布。然而,模拟焊接速度,TCST和动态粘度对溶质稀释度的影响,并证明不可忽略不可忽略。在衬里焊接和点焊之间也观察到凝固和稀释现象的差异。据证明,在焊接和添加剂制造过程中,在这项工作中提供了一种重要的角度,在理解熔池内的热量和传质现象。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2020年第11期|120233.1-120233.16|共16页
  • 作者单位

    Key Laboratory of Mechanics in Advanced Manufacturing institute of Mechanics. Chinese Academy of Sciences Beijing 100190 China School of Engineering Science University of Chinese Academy of Sciences. Beijing 100049 China;

    Key Laboratory of Mechanics in Advanced Manufacturing institute of Mechanics. Chinese Academy of Sciences Beijing 100190 China School of Engineering Science University of Chinese Academy of Sciences. Beijing 100049 China Center of Materials Science and Optoelectronics Engineering University of Chinese Academy of Sciences Beijing 100049 China;

    Key Laboratory of Mechanics in Advanced Manufacturing institute of Mechanics. Chinese Academy of Sciences Beijing 100190 China School of Engineering Science University of Chinese Academy of Sciences. Beijing 100049 China;

    Key Laboratory of Mechanics in Advanced Manufacturing institute of Mechanics. Chinese Academy of Sciences Beijing 100190 China School of Engineering Science University of Chinese Academy of Sciences. Beijing 100049 China;

    Key Laboratory of Mechanics in Advanced Manufacturing institute of Mechanics. Chinese Academy of Sciences Beijing 100190 China School of Engineering Science University of Chinese Academy of Sciences. Beijing 100049 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

    Thermal behavior; Fluid flow; Solidification characteristics; Mass transfer; Dissimilar welding; Additive manufacturing;

    机译:热行为;流体流动;凝固特征;传质;不同的焊接;添加剂制造;

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