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Modeling and application of ring stiffness condition for radial-axial ring rolling

机译:径向轴向轧制环刚度条件的建模与应用

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摘要

Radial-axial ring rolling (RARR) is an advanced incremental metal-forming technology for manufacturing various seamless rings, especially for large scale rings. A primary problem for RARR is to facilitate rolling process stable and form a ring with good dimension and performance. However, RARR is an extremely complex dynamic rolling process with high flexibility. To reasonably control guide roll is an important approach to keep rolling process stable during RARR. In this paper, a mathematical model of ring stiffness condition for were was established based on the force method. Then the influence factors to ring stiffness were discussed, especially the section bending moment factor. To verify the ring stiffness model, finite element (FE) simulation was adopted. In addition, a comparison of different ring stiffness models was made. It can be found the proposed stiffness model has a high accuracy. Furthermore, a control method of the pressure in the hydraulic cylinder to adjust the guiding force based on the stiffness model was proposed. By FE simulation of RARR, an appropriate adjustment coefficient to determine the guiding force was obtained. Finally, an experiment of RARR for a large ring was carried out. The rolling process was very smooth and steady, and a super-large ring with diameter more than 9 m was manufactured successfully. (C) 2016 Elsevier Ltd. All rights reserved.
机译:径向轴环轧制(RARR)是一种先进的增量金属成形技术,用于制造各种无缝环,尤其是大型环。 RARR的主要问题是促进轧制过程的稳定性并形成具有良好尺寸和性能的环。但是,RARR是极其复杂的动态滚动过程,具有很高的灵活性。合理控制导辊是在RARR期间保持轧制过程稳定的重要方法。本文基于力法建立了环刚度条件的数学模型。然后讨论了影响环刚度的因素,尤其是截面弯曲力矩因素。为了验证环刚度模型,采用了有限元(FE)仿真。另外,比较了不同的环刚度模型。可以发现,提出的刚度模型具有很高的精度。此外,提出了一种基于刚度模型的液压缸压力调节导引力控制方法。通过RARR的有限元模拟,获得了合适的调节系数来确定导引力。最后,针对大环进行了RARR实验。轧制过程非常平稳,并且成功制造了直径大于9 m的超大型环。 (C)2016 Elsevier Ltd.保留所有权利。

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