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Numerical Simulation for the Roll Forming Process of a Channel Steel

机译:通道钢轧辊成型过程的数值模拟

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In this study, finite element method is used to analyze the stress and strain distributions in various regions of a channel steel during the roll forming process, and reveal the deformation pattern of the channel steel. The results indicate that the deformation and thickness reduction of sheet metal mainly concentrates in the corner and the ends of web section, while it is insignificant in the channel edges and the central portion of the web. During the stable stage of roll forming process, the rolling force fluctuation in each pass is related to the change of forming angle in that pass. For the pass with the largest change of forming angle, the most significant fluctuation in rolling force is observed. It is also the pass that most probably causes quality issues to the final product. Finally, it is found that changing the forming angle distribution among all the passes cannot reduce the stress fluctuation among the passes. As such, the process optimization needs to be realized by other approaches.
机译:在该研究中,有限元方法用于在辊成形过程中分析通道钢的各个区域中的应力和应变分布,并揭示通道钢的变形图案。结果表明,金属板的变形和厚度减小主要集中在腹板部分的角落和侧端,而在沟道边缘和腹板的中心部分中是微不足道的。在辊形成过程的稳定阶段期间,每个通行证中的滚动力波动与该通过的成形角度的变化有关。对于具有最大成形角度变化的通过,观察到滚动力最大的波动。它也是最多可能对最终产品产生质量问题的通行证。最后,发现改变所有通道之间的成形角度分布不能降低通过的压力波动。因此,需要通过其他方法实现过程优化。

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