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PREDICTION OF RESIDUAL STRESSES IN A MULTIPASS PIPE WELD BY A NOVEL 3D FINITE ELEMENT APPROACH

机译:采用新型3D有限元方法预测多脂管焊接中的残余应力

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Due to enormous computation cost, current residual stress simulation of multipass girth welds are mostly performed using two-dimensional (2D) axisymmetric models. The 2D model can only provide limited estimation on the residual stresses by assuming its axisymmetric distribution. In this study, a highly efficient thermal-mechanical finite element code for three dimensional (3D) model has been developed based on high performance Graphics Processing Unit (GPU) computers. Our code is further accelerated by considering the unique physics associated with welding processes that are characterized by steep temperature gradient and a moving arc heat source. It is capable of modeling large-scale welding problems that cannot be easily handled by the existing commercial simulation tools. To demonstrate the accuracy and efficiency, our code was compared with a commercial software by simulating a 3D multi-pass girth weld model with over 1 million elements. Our code achieved comparable solution accuracy with respect to the commercial one but with over 100 times saving on computational cost. Moreover, the three-dimensional analysis demonstrated more realistic stress distribution that is not axisymmetric in hoop direction.
机译:由于巨大的计算成本,多余围绕焊缝的电流残余应力模拟主要使用二维(2D)轴对称模型进行。通过假设其轴对称分布,2D模型仅可以对残余应力提供有限的估计。在本研究中,已经基于高性能图形处理单元(GPU)计算机开发了三维(3D)模型的高效热机械有限元码。通过考虑与焊接过程相关联的独特物理,进一步加速了我们的代码,其特征在于陡峭的温度梯度和移动电弧热源。它能够在现有的商业仿真工具中建模不易处理的大规模焊接问题。为了展示准确性和效率,通过模拟具有超过100万个元素的3D多遍围绕焊接模型,将我们的代码与商业软件进行比较。我们的代码实现了商业人员的可比解决方案准确性,但在计算成本上节省了100倍。此外,三维分析表明了更现实的应力分布,其在箍方向上不是轴对称的。

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