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3D modeling of the hydrogen distribution in X80 pipeline steel welded joints

机译:X80管线钢焊接接头中氢分布的3D建模

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The distribution of diffusion hydrogen in the welded joints of high-strength X80 pipeline steel was investigated using finite element method. Using ABAQUS software, hydrogen diffusion in X80 pipeline steel welded joint was studied in consideration of the inhomogeneity of the weld zone, and temperaturedependent thermo-physical and mechanical properties of the metals. The effects of preheating procedure and welding heat input on the hydrogen diffusion behavior were studied. Three-dimensional finite element models were developed and coupled thermo-mechanical-diffusion analyses under different welding conditions were performed. It is found that the postweld residual hydrogen exhibits a nonuniform distribution across the welded joint. A maximum equivalent stress occurs in the immediate vicinity of the weld metal. The heat affected zone has the highest hydrogen concentration level, followed by the welding zone and the base metal. Both preheating and increasing heat input are effective in reducing the diffusion hydrogen content remaining in the weld zone for the X80 pipeline steel welded joints.
机译:采用有限元方法研究了高强度X80管线钢焊接接头中扩散氢的分布。使用ABAQUS软件,考虑到焊接区的不均匀性以及金属的温度依赖性热物理和机械性能,研究了X80管线钢焊接接头中的氢扩散。研究了预热程序和焊接热量输入对氢扩散行为的影响。建立了三维有限元模型,并在不同的焊接条件下进行了热机械扩散分析。发现焊后残余氢在整个焊接接头上表现出不均匀的分布。最大等效应力出现在焊接金属的附近。热影响区的氢浓度最高,其次是焊接区和贱金属。预热和增加热量输入对于减少X80管线钢焊接接头的焊接区域中残留的扩散氢含量都是有效的。

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