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Mechanism Research on Multi-wedge Synchrostep Rolling Asymmetric Shaft-Parts by Cross-wedge Rolling

机译:交叉楔形多楔同步轧制不对称轴部件的机制研究

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Because most of the asymmetric shaft-parts have relatively large size in the axial direction, single-wedge cross-wedge rolling (CWR) exposes many imperfections, such as the huge roller, higher cost etc. The paper adopted finite element method (FEM) to simulate multi-wedge synchrostep CWR (MS-CWR) based on the typical asymmetric shaft-part, and gained its distribution and characteristics of stress and strain. In the knifing stage, the deformation of work piece only emerges on the local region, but in the stretching stage, most of regions observe the deformation except two ends of the billet and the transition position between inner and outer wedge of multi-wedges. The results offer theoretical basis for promoting and applying MS-CWR technology on asymmetric shaft-parts.
机译:由于大多数不对称轴部件在轴向方向上具有相对大的尺寸,因此单楔形交叉楔滚动(CWR)暴露了许多缺陷,例如巨大的辊,更高的成本等。本文采用了有限元方法(FEM)基于典型的不对称轴部分模拟多楔同步型CWR(MS-CWR),并获得了应力和应变的分布和特性。在刀架中,工件的变形仅在局部区域出现,但在拉伸阶段,大部分地区观察除坯料两端的变形以及多楔的内楔之间的过渡位置。结果为促进和应用了不对称轴部件的MS-CWR技术提供了理论依据。

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