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Finite-element simulation of tack welds in girth welding of a pipe-flange joint

机译:管法兰接头环缝焊接中点焊的有限元模拟

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摘要

Welding deformations play an important role in sealing capabilities and service life of welded pipe-flange joints. A numerical procedure for modeling of tack welds in girth butt-welding of such joints is of vital importance for the prediction of transverse shrinkage and flange face deformation, which is directly related to the joint sealing capability. This paper presents a 3-D finite element simulation of a pipe-flange joint to describe the numerical procedure for modeling of tack welds in circumferential joints. Sequentially coupled nonlinear transient thermo-mechanical analysis is performed to simulate Metal Inert Gas (MIG) welding. Single pass butt weld geometry with single “V” for 100 mm nominal diameter pipe with same sized weld neck type ANSI flange of class no. 300 is used. Temperature dependent material properties are used and deposition of filler metal is obtained by element birth and death feature. The peak temperature of the tack during the butt-welding of the tacked model is concluded a key parameter for numerical prediction of deformations, whereas tack temperature has negligible effect on the residual stresses.
机译:焊接变形在焊接的管-法兰接头的密封性能和使用寿命中起着重要作用。在此类接头的环缝对接焊中对点焊进行建模的数值程序对于预测横向收缩和法兰面变形至关重要,这直接关系到接头的密封性能。本文介绍了管道-法兰接头的3-D有限元模拟,以描述数值模拟圆周接头粘结焊缝的程序。进行了顺序耦合的非线性瞬态热机械分析,以模拟金属惰性气体(MIG)焊接。单通对接焊缝几何形状,带“ V”字样,适用于公称直径为100 mm的管道,具有相同尺寸的No.使用300。使用取决于温度的材料特性,并通过元素的生死特征获得填充金属的沉积。结论:对接模型的对焊过程中,对接点的峰值温度是变形数值预测的关键参数,而对接点温度对残余应力的影响可忽略不计。

著录项

  • 来源
    《Acta Mechanica》 |2005年第2期|53-64|共12页
  • 作者

    M. Abid; M. Siddique;

  • 作者单位

    Faculty of Mechanical Engineering GIK Institute of Engineering Sciences and Technology Topi NWFP Pakistan;

    Faculty of Mechanical Engineering GIK Institute of Engineering Sciences and Technology Topi NWFP Pakistan;

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  • 原文格式 PDF
  • 正文语种 eng
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