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Study on Formation Mechanism of Axle Part in the New Cross-Wedge Rolling Process Based on Experiment and Simulation

机译:基于实验和仿真的新型交叉楔形轧制过程中轴部形成机理研究

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摘要

Aiming at the concavity defects in the cross-wedge rolling (CWR) process, one new rolling method named as the twice closed-open joint CWR was presented to improve the use ratio of material in CWR of the axle parts. The new rolling method included three stages: the first closed rolling, the second closed rolling and the last open rolling. To investigate the flow of material in this rolling process, one 3D finite element model (FEM) of the twice closed-open joint CWR was established. The CWR process of one pump spindle part was simulated using the established 3D FEM. The formation, the flow law of metal materials and concavity defects of end were studied. In addition, the CWR experiments were carried out. The results of simulation agreed with the results of tests well. The results proved that the new method can decrease the extent of concavity and improve the material use ratio.
机译:针对交叉楔形轧制(CWR)过程中的凹面缺陷,提出了一种名为两次闭合关节CWR的新轧制方法,以提高轴部件CWR中材料的使用比率。 新的轧制方法包括三个阶段:第一个封闭式轧制,第二封闭轧制和最后一个开放式滚动。 为了研究该轧制过程中材料的流动,建立了两次闭合关节CWR的一个3D有限元模型(FEM)。 使用建立的3D FEM模拟一个泵主轴部分的CWR处理。 研究了金属材料的流动定律和结束的凹陷缺陷。 此外,进行CWR实验。 模拟结果同意测试结果良好。 结果证明,新方法可以降低凹陷程度,提高材料使用比率。

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