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Determining and Optimizing of Guide Rolls Motion Track in Cold Ring Rolling Process

机译:冷环轧制过程中导辊运动轨迹的确定与优化

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摘要

Guide rolls play an important role in controlling both the ring circularity and the stability of cold ring rolling process. However, it is difficult to predict and control the motion of the guide rolls due to the complexity of process associated with the coupled effects of multi-factors. In this paper, a reasonable controlling model of the guide rolls is proposed, and the functional relationship between the motion track of the guide rolls and their setup parameters and process ones is established, by which the guide rolls motion track can be determined. On this basis, a 3D-FE simulation model for cold ring rolling is developed under the ABAQUS software environment and the effects of the initial position and motion track of the guide rolls on the forming stability, ring circularity, rolling force, and oscillating are investigated. Taking the forming stability and ring circularity as objects, the optimum initial position and motion track of the guide rolls are obtained.
机译:导辊在控制环向圆度和冷环轧制过程的稳定性方面都起着重要作用。然而,由于与多因素的耦合效应相关的过程的复杂性,难以预测和控制导辊的运动。本文提出了一种合理的导辊控制模型,建立了导辊运动轨迹与其设定参数和工艺参数之间的函数关系,从而确定了导辊的运动轨迹。在此基础上,在ABAQUS软件环境下开发了冷环轧制3D-FE仿真模型,并研究了导辊的初始位置和运动轨迹对成形稳定性,环向圆度,轧制力和摆动的影响。 。以成形的稳定性和环的圆度为对象,可获得导辊的最佳初始位置和运动轨迹。

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