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Investigation on the hole evolution and forming dimensions during cross wedge rolling hollow shaft with mandrel

机译:用心轴交叉楔形滚动空心轴孔进化与形成尺寸的研究

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The cross wedge rolling (CWR) is an efficient and green process for manufacturing hollow shafts. The mandrel plays an important role in controlling hole shape during the process of CWR hollow shafts with mandrel. To obtain precise dimensions of rolled parts, the hole evolution during rolling in different parameters is need to be investigated further. This paper deeply studied the effect mechanism of mandrel on hole of hollow shaft. A finite element model (FEM) was developed to analyse the evolution process of inner hole during CWR hollow shaft, and the results shown that the wall of hollow shaft is rolled and the hole dimensions is grow after inner hole contacts mandrel. The hole evolution process can be considered as the rolling of wall under the effect of CWR dies and mandrel. A layer gap between the mandrel and the hole of rolled parts, defined as diameter difference, is caused because of the hole expansion. The effect of process parameters on the diameter difference was investigated by conducting CWR experiments. It shown that the diameter difference increases with stretching angle and mandrel diameter; and decreases with forming angle, compression ratio and wall thickness. The results reveals the hole evolution and the causes of the diameter difference during CWR hollow shafts with mandrel, and can provide theoretical guidance for the production application.
机译:交叉楔形轧制(CWR)是制造空心轴的有效和绿色工艺。心轴在用心轴的CWR空心轴过程中对控制孔形状起着重要作用。为了获得轧制部件的精确尺寸,需要进一步研究轧制在不同参数期间的孔进化。本文深入研究了心轴对空心轴孔的效果机制。开发了有限元模型(FEM)以分析CWR中空轴期间内孔的进化过程,结果表明,中空轴壁滚动并且孔尺寸在内孔接触心轴之后生长。孔进化过程可以被认为是CWR模具和心轴的效果下墙的滚动。由于空穴膨胀,导致心轴和轧制部件孔之间的层间隙,被定义为直径差异。通过进行CWR实验研究了工艺参数对直径差的影响。它表明,直径差随拉伸角和心轴直径而增加;以形成角度,压缩比和壁厚减小。结果揭示了CWR中空轴与心轴中的直径差的原因,可以为生产应用提供理论指导。

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