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姚熊亮, 刘庆杰, 孙谦, 周其新. 基于ABAQUS平台对球冠结构焊接变形的数值试验[J]. 焊接学报, 2007, (6): 89-92.
引用本文: 姚熊亮, 刘庆杰, 孙谦, 周其新. 基于ABAQUS平台对球冠结构焊接变形的数值试验[J]. 焊接学报, 2007, (6): 89-92.
YAO Xiongliang, LIU Qingjie, SUN Qian, ZHOU Qixin. Numerical simulation on welding deformation of spherical cap structure based on ABAQUS[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2007, (6): 89-92.
Citation: YAO Xiongliang, LIU Qingjie, SUN Qian, ZHOU Qixin. Numerical simulation on welding deformation of spherical cap structure based on ABAQUS[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2007, (6): 89-92.

基于ABAQUS平台对球冠结构焊接变形的数值试验

Numerical simulation on welding deformation of spherical cap structure based on ABAQUS

  • 摘要: 球冠结构在焊接过程中产生的焊接变形是关系到结构安全性能的重要指标。为了保证球冠焊接构件的可靠性,准确推断球冠结构焊接变形,有必要针对球冠结构的焊接变形进行数值试验分析。基于大型有限元软件ABAQUS开发相应的焊接程序,对焊接过程中温度场、结构变形进行了数值模拟,并将模拟结果与相关理论值及试验值进行对比分析。结果表明,数值试验结果与理论结果基本吻合,满足工程要求。在此基础上,对球冠结构的焊接过程进行三维有限元分析,得到了球冠结构焊接变形随球冠壁厚、焊接坡口形式及焊接顺序的变化规律,为控制结构的焊接变形提供了依据。

     

    Abstract: The welding deformation during the welding process of spherical cap structure is a very important guideline on the structural safety.In order to guarantee the reliability of welded spherical cap structure and estimate the welding deformation accurately, it is necessary to carry through the numerical simulation analysis of welding deformation on spherical cap structure.The temperature field and structural deformation during the welding process were numerically simulated with a welding program, which was developed based on the large FEM software ABAQUS.Then the simulation results were analyzed and compared the correlative theoretical results with the experimental results.The contrasted results show that the numerical simulation results correspond basically to the theory results, thus the engineering requirements are satisfied.Based on these studies, 3D FEM numerical simulation of the welding process on the spherical cap structure was presented.And the variation of welding deformation with the plate thickness of spherical cap structure, welding groove shape and welding sequence was obtained, which provides the reliable foundation for controlling the structural welding deformation.

     

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