首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering >Numerical investigation of residual stresses and distortions due to multi-pass welding in a pipe-flange joint
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Numerical investigation of residual stresses and distortions due to multi-pass welding in a pipe-flange joint

机译:管法兰接头多道次焊接残余应力和变形的数值研究

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摘要

This paper presents a numerical simulation for examining temperature fields, residual stresses, and distortions in multi-pass welding of a pipe-flange joint. A sequentially coupled transient non-linear thermo-mechanical three-dimensional finite-element model is developed to simulate four-pass tungsten inert gas welding process. An ANSI class 300{#} flange is welded with a 6 mm thick, 200 mm long, and 100 mm nominal diameter pipe, using a single V-groove butt joint with a 1.2 mm root opening. Goldak's double ellipsoidal model is used for the weld heat source, and inactive element addition technique is used for the addition of weld filler elements. Axial and hoop residual stresses and out-of-plane distortions along the flange face are plotted. In addition, welding start and end effects are discussed.
机译:本文提出了一种数值模拟,用于检查管法兰接头多道次焊接中的温度场,残余应力和变形。建立了一个顺序耦合的瞬态非线性热机械三维有限元模型,以模拟四道次钨极惰性气体保护焊过程。使用具有1.2 mm根部开口的单个V型槽对接,将ANSI 300 {#}法兰与6 mm厚,200 mm长和100 mm公称直径的管道焊接在一起。 Goldak的双椭圆体模型用于焊接热源,非活性元素添加技术用于添加焊接填充元素。绘制了沿法兰面的轴向和环向残余应力以及平面外变形。此外,还讨论了焊接的开始和结束效果。

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