• CN:11-2187/TH
  • ISSN:0577-6686

机械工程学报 ›› 2015, Vol. 51 ›› Issue (10): 69-78.doi: 10.3901/JME.2015.10.069

• 材料科学与工程 • 上一篇    下一篇

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TIG焊电弧-熔池传热与流动数值模拟

王新鑫1, 樊丁1, 2, 黄健康1, 2, 黄勇1, 2   

  1. 1.兰州理工大学甘肃省有色金属新材料省部共建国家重点试验室 兰州 730050;
    2.兰州理工大学有色金属合金及加工教育部重点试验室 兰州 730050;
  • 出版日期:2015-05-15 发布日期:2015-05-15
  • 基金资助:
    国家自然科学基金资助项目(51074084,51205179)

Influence of Mold Cavity Gas Pressure on the Surface Quality of a Microcellular Injection Molding Part

WANG Xinxin1, FAN Ding1, 2, HUANG Jiankang1, 2, HUANG Yong1, 2   

  1. 1. Institute State Key Laboratory of Gansu Advanced Non-ferrous Metal Materials, Lanzhou University of Technology, Lanzhou 730050;
    2. Key Laboratory of Non-ferrous Metal Alloys of Ministry of Education, Lanzhou University of Technology, Lanzhou 730050
  • Online:2015-05-15 Published:2015-05-15

摘要: 针对钨极惰性气体保护(Tungsten inert gas,TIG)焊,采用一组满足整个求解域的偏微分方程组和合理的边界条件,建立包括钨极、电弧和母材的三维瞬态统一模型。以SUS304不锈钢为母材,求解获得电弧-电极(熔池)的温度场、流场、压力、电流密度、电磁力等结果,并与已有的试验结果和其他相关的研究结果做对比。在此基础上,通过分析阳极热输入,求得焊接热效率为86.3%。重点比较浮力、电磁力、等离子流拉力和Marangoni剪切力单独作用下的熔池流动特性,并将计算结果和格拉晓夫数Gr、磁雷诺数Rm和表面张力雷诺数Ma相结合,分析了这几种驱动力的相对作用大小,将计算结果和Peclet数Pe相结合强调了熔池热对流与热传导的相对作用。结果表明,与等离子拉力和Marangoni剪切力相比,浮力和电磁力对熔池对流的作用较小;等离子拉力和Marangoni剪切力处于同一数量级,而Marangoni剪切力大于等离子流拉力,两者共同作用使熔池表面金属由内向外流动。与热传导相比,熔池金属这种向外流动导致的热对流主导传热过程,是造成TIG焊宽而且浅的焊缝形貌的本质原因。

关键词: 传热, 流动, 统一模型, 钨极惰性气体保护焊, 相对作用

Abstract: Based on a set of partial differential equations and reasonable boundary conditions, a unified three dimensional transient model including the tungsten electrode, arc plasma and base metal (weld pool) is developed for tungsten inert gas welding. By solving the equations, the temperature, velocity, arc pressure, current density and electromagnetic force of the whole domain are obtained with an anode of SUS 304 stainless steel. The calculated results are compared with the existing experimental and theoretical data in other literature. By investigating the anodic heat input, the welding thermal efficiency is calculated to be 86.3%. The effects of the buoyance, electromagnetic force, plasma drag force and Marangoni stress on the flow of the molten pool are studied respectively. The relative importance of these forces are investigated by using Grashof number Gr, magnetic Reynolds number Rm, and Marangoni number Ma. The relative importance of heat conduction and heat convection in the weld pool is highlighted with the help of Peclet number Pe. It is found that the effects of buoyance and electromagnetic force on the flow of the weld pool is less important compared with plasma drag force and Marangoni stress. Plasma drag force and Marangoni stress are of the same order of magnitude, while the Marangoni stress is larger than plasma drag force, and they together drive the flow from the center to the periphery of the weld pool. Compared with the heat conduction, the heat convection caused by the outward flow determines the heat transfer in the weld pool, and result in a shallow and wide weld pool profile in TIG welding.

Key words: flow, heat transfer, relative importance, tungsten inert gas(TIG) welding, unified model

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