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Investigation on the effect of mandrels on hollow shafts in cross-wedge rolling

机译:心轴对交叉楔形轧制空心轴效果的研究

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摘要

Cross-wedge rolling (CWR) hollow shafts with mandrels can control the hole contour and reduce internal defects so that the working conditions for the shafts can be met. The diameter of the mandrel plays an important role in this forming process. In this study, numerical simulations and experimental trials were conducted as part of a detailed investigation on the mechanism of a mandrel and its influence on the forming quality of CWR hollow shafts. The contact areas between the mandrel and workpiece, the rolling forces of the mandrel, stress-strain fields, metal flows and temperatures were analysed in detail. The gaps on the surface of dies designed to prevent torsion failure of the rolled piece lead to noticeable steps on the surface of the rolled piece, as the relative diameter of the mandrel is too large. The diameter and non-circularity of the outer and inner surface increase with the increase of the relative diameter of the mandrel. The results can provide theoretical guidance for the production application of cross-wedge rolling hollow shafts with mandrels.
机译:带心轴的交叉楔形滚动(CWR)空心轴可以控制孔轮廓并减少内部缺陷,从而可以满足轴的工作条件。心轴的直径在这种形成过程中起重要作用。在本研究中,根据心轴机制的详细研究,进行数值模拟和实验试验以及其对CWR空心轴的形成质量的详细研究。细节轴和工件之间的接触区域,微轴,应力 - 应变场,金属流和温度的滚动力进行了详细分析。模具表面上的间隙设计用于防止轧制件的扭转失效导致轧制件表面上的显着步骤,因为心轴的相对直径太大。随着心轴的相对直径的增加,外表面和内表面的直径和非圆形度增加。结果可以为芯轴提供交叉楔形滚动空心轴的生产应用提供理论指导。

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