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Study on barrelling behavior of variable-diameter tubes in axial hydro-forging sequence

机译:轴向液压锻造序列中变径管的滚筒行为研究

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摘要

Axial hydro-forging sequence is an emerging approach in forming the variable-diameter tubes without thinning. However, after the batch production, a barrelling defect occurs at the end of the maximum diameter zone during the process. To investigate the barrelling behavior of the tube in axial hydro-forging sequence, experiments and finite element simulation were carried out in the present work. It could be concluded that the barrelling formation is attribute to the non-uniform stress distribution and the geometric feature of the tube. Subsequently, the effect of expansion ratio, friction coefficient and transition form on barrelling behavior was investigated. It was found that the degree of the barrelling increased with increasing the expansion ratio, but decreased with reducing the friction coefficient. Moreover, the transition form had a significant effect on the barrelling degree, and the barrelling defect can be eliminated when the transition form with circular arc was employed.
机译:轴向液压锻造序列是一种在不变薄的情况下形成可变直径管材的新兴方法。然而,在批量生产后,在加工过程中,最大直径区的末端会出现桶装缺陷。为了研究管材在轴向液压锻造过程中的滚筒行为,进行了实验和有限元模拟。可以得出结论,滚筒的形成归因于不均匀的应力分布和管子的几何特征。随后,研究了膨胀比、摩擦系数和过渡形式对滚筒行为的影响。结果表明,随着膨胀比的增加,滚筒程度随膨胀比的增加而增加,而随着摩擦系数的减小而减小。此外,过渡形式对滚筒度有显著影响,采用圆弧过渡形式可以消除滚筒缺陷。

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