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FEA Solutions for Simulating Multi-Workpiece and Multi-Process in Manufacturing Process of Submarine Welded Pressure Hull

机译:用于模拟多工件和多过程的FEA解决方案,在潜艇焊接压力船体制造过程中

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To realize the numerical simulation of multi-workpiece and multi-process, two difficulties encountered in continuous finite element analysis (FEA) were brought forward firstly. Then the theoretical basis of merging measured initial residual stresses into FEA models was discussed. Based on which the mapping method of multi-model in continuous FEA was put forward. This method can be potentially used to realize such continuous FEA as manufacturing of welded submarine pressure hull by transferring the finite element analysis results between different processes and workpieces. No commercial FEA codes can give perfect solutions to these transfer processes at present. The commercial FEA code MSC.Marc was used as the FEA platform to realize simplifying analysis. Because of all the welding processes are multi-process, so the mapping method of multi-model in continuous FEA can be potential used in the welding simulation to make the calculating results be accurate.
机译:为了实现多工件和多过程的数值模拟,首先提出了连续有限元分析(FEA)中遇到的两个困难。然后讨论了将测量的初始残余应力合并到FEA模型中的理论基础。基于连续FEA中多模型的映射方法提出。通过在不同的工艺和工件之间转移有限元分析结果,该方法可以潜在地用于实现这种连续的FEA作为焊接潜艇压力船体的制造。目前没有商业FEA代码可以为这些转移过程提供完美的解决方案。商业FEA代码MSC.MCC被用作FEA平台以实现简化分析。由于所有焊接过程都是多过程,因此在连续FEA中的多模型的映射方法可以是焊接模拟中的潜力,以使计算结果准确。

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