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Simulation of dissimilar tailor-welded tubular hydroforming processes using EAS-based solid finite elements

机译:使用基于EAS的固体有限元模拟不同的拼焊管状液压成型工艺

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摘要

Developments in the numerical simulation of the hydroforming process of tubular metallic components, tailor-welded before forming, are presented. Both technologies, tailor-welded joining operations and hydroforming processes, are well known in industry, although most commonly separately used. Tailor-welded joining operations are usually encountered in plain sheets, subsequently formed by stamping. Tube hydroforming processing, on the other hand, is frequently associated with parts consisting of uniform thickness, material properties, and dimensions. The present analysis focuses on the influence of process parameters, such as the position of the weld-line and initial thickness values, in the innovative process of combining tailor-welded tubes (with distinct thickness values) and hydroforming. Particular attention is posed on the relation of imposed axial displacement vs. imposed hydraulic pressure into the tube, forming parameters that are not known a-priori in the manufacturing of a new part. Another point of practical interest is the numerical simulation of the weld-line movement, after forming is complete. The finite element method is directly employed in the numerical simulation by means of innovative solid elements suited for incompressibility applications, and included by the authors into the commercial program ABAQUS as user-elements. The obtained results can then lead to a better understanding, along with design tools, for the process of hydroforming of tailor-welded tubular parts, accounting for dissimilar thickness of the basic components.
机译:介绍了管状金属零件在成形前进行手工焊接的液压成形过程数值模拟的进展。尽管最常单独使用,但这两种技术,即量身定制的焊接操作和液压成形工艺,在行业中是众所周知的。通常在平整的板材中进行拼焊连接操作,然后通过冲压成型。另一方面,管液压成型加工通常与厚度均匀,材料性能和尺寸均匀的零件相关联。在将定制焊接管(具有不同厚度值)和液压成形相结合的创新过程中,本分析着重于工艺参数的影响,例如焊缝的位置和初始厚度值。特别要注意的是施加到管中的轴向位移与施加的液压压力之间的关系,这些参数在新零件的制造中不是先验的。实际关注的另一点是成型完成后熔合线运动的数值模拟。有限元方法通过适用于不可压缩性应用的创新性固体元素直接用于数值模拟,并被作者作为用户元素包含在商业程序ABAQUS中。然后,所获得的结果可以与设计工具一起,更好地理解拼焊管状零件的液压成型过程,从而解决了基本部件的厚度不相同的问题。

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