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FE analysis of coupled thermo-mechanical behaviors in radial-axial rolling of alloy steel large ring

机译:合金钢大环圈径向轧制热力学行为耦合有限元分析

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摘要

Radial-axial rolling of alloy steel large ring (ASLR) is an advanced plastic forming process with complex coupled thermo-mechanical deformation behaviors which have significant influences on the microstructure and properties of the product. In this paper, the stable forming conditions and ranges of key forming parameters for the radial-axial rolling process of ASLR are determined reasonably. Then a 3D elastic-plastic and coupled thermo-mechanical FE model of radial-axial ring rolling is explored using the dynamic explicit code ABAQUS/Explicit, and its reliability is verified theoretically and experimentally. Using FE simulation and analysis, the effects of key forming parameters on the uniformity of deformation and temperature distribution of ASLR are investigated. The main results show that: (1) The deformation and temperature distribution of the ASLR are nonuniform in radial-axial ring rolling. The PEEQ gradually decreases from the surface region to the central region of the ASLR while the temperature distribution is reverse. The largest PEEQ and smallest temperature appear in the edge region of the ASLR. (2) With increasing the feed speeds of rolls, initial temperature of blank or decreasing the rotation speeds of rolls, the deformation of the ASLR becomes more uniform. (3) With increasing the feed speeds of rolls, rotation speeds of rolls or decreasing the initial temperature of blank, the temperature distribution of the ASLR becomes more homogeneous. (4) The friction coefficient has a slight effect on the uniformity of deformation and temperature distribution of the ASLR. The results provide an important basis for improving the microstructure and forming quality of ASLR through optimization of forming parameters.
机译:合金钢大环(ASLR)的径向轴向轧制是一种先进的塑性成形工艺,具有复杂的热机械变形行为,对产品的微观结构和性能产生重大影响。本文合理地确定了ASLR径向轧制过程的稳定成形条件和关键成形参数范围。然后使用动态显式代码ABAQUS / Explicit,探索了径向-轴向环形轧制的3D弹塑性耦合热机械有限元模型,并在理论和实验上验证了其可靠性。通过有限元模拟和分析,研究了关键成形参数对ASLR变形均匀性和温度分布的影响。主要研究结果表明:(1)ASLR在径向-轴向环轧过程中变形和温度分布不均匀。 PEEQ从ASLR的表面区域到中心区域逐渐减小,而温度分布相反。最大的PEEQ和最小的温度出现在ASLR的边缘区域。 (2)随着辊的进给速度的增加,坯料的初始温度或辊的旋转速度的降低,ASLR的变形变得更加均匀。 (3)随着辊的进给速度的增加,辊的旋转速度的降低或坯料的初始温度的降低,ASLR的温度分布变得更加均匀。 (4)摩擦系数对ASLR变形的均匀性和温度分布影响很小。该结果为通过优化成形参数改善ASLR的组织和成形质量提供了重要依据。

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