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Finite element models of laser welding.

机译:激光焊接的有限元模型。

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摘要

A numerical study was undertaken in an effort to understand the complex heat and fluid flow during the laser beam welding process. The finite element method was applied, and a horizontal cross sectional model and a vertical cross sectional model have been suggested. In the horizontal cross sectional model, heat transfer in the deep penetration mode laser welding was discussed with the assumption that a keyhole has been formed and heat and fluid flow are two dimensional. Even though the driving forces of the weld convection are missing in the horizontal cross sectional model and the heat and fluid flow in the weld pool are more complicated than can be explained by it, the model included the penetration mode concept of the keyhole and is a helpful conceptual stepping stone toward the understanding of laser welding. It also served as a point of introduction for the enthalpy method in finite element analysis.; The weld pool convection induced by the surface tension gradient in the conduction mode laser welding has been discussed in the vertical cross sectional model with and without a flat free surface assumption. It was found that a typical surface tension gradient during welding created violent convection in the weld pool. This model explains the elements of weld pool convection in conduction mode laser welding. Free surface problems with kinematic boundary conditions were also introduced as a part of the vertical cross sectional model. It was found that the presence of normal stress on the free surface places a severe restriction on the time step in the computations of time dependent problems.; An enthalpy method has been shown to be useful in solving the Stefan problems with moving multi-phase interfaces. The presence of latent heat in the simulations of welding influences heat and fluid flow such that the weld pool is stretched in the direction of welding when the latent heat is included in the model.
机译:进行了数值研究,以了解激光束焊接过程中的复杂热量和流体流动。应用了有限元方法,并提出了水平截面模型和垂直截面模型。在水平横截面模型中,讨论了在深熔焊模式激光焊接中的传热,并假设已经形成了小孔,并且热量和流体流动是二维的。即使水平横截面模型中没有焊接对流的驱动力,并且焊缝池中的热量和流体流动比它所解释的要复杂得多,但该模型包含了锁孔的穿透模式概念,是一种对理解激光焊接很有帮助的概念性垫脚石。它也可以作为焓法在有限元分析中的介绍。在有和没有平坦自由表面假设的情况下,已经在垂直截面模型中讨论了在传导模式激光焊接中由表面张力梯度引起的焊池对流。发现在焊接过程中典型的表面张力梯度在焊池中产生剧烈的对流。该模型解释了传导模式激光焊接中熔池对流的要素。具有运动学边界条件的自由表面问题也作为垂直横截面模型的一部分被引入。发现在自由表面上存在正应力会严重限制时间相关问题的计算时间步长。焓方法已显示对于解决移动多相界面的Stefan问题很有用。焊接模拟中潜热的存在会影响热量和流体流动,因此当模型中包含潜热时,焊池会沿焊接方向拉伸。

著录项

  • 作者

    Lee, Jinhee.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Applied Mechanics.; Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1992
  • 页码 168 p.
  • 总页数 168
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用力学;机械、仪表工业;
  • 关键词

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