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Strip end flip during finishing rolling under misalignment conditions of work roll pair

机译:在工作卷对的未对准条件下整理轧制过程中的条带端翻转

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Misalignment in the assembly of finishing rolls in the mill stand housing often leads to instability of the strip during finish rolling such as snake motion, side walk and strip end flip. Among these problems, the strip end flip is the most serious one. It often occurs upon steel strip end being released from the roll bite of a previous mill stand and being further fed into the next stand. As a result, it may cause folding of the strip end and/or result in serious damage on the finishing roll surface. This would significantly deteriorate the strip quality and cause serious consequence in production. Due to irregularity of occurrence and difficulty in on-site observation, this phenomenon has been a troublesome issue in finishing rolling. The aim of this work was to analyze the effect of the misalignment of the finishing work rolls on the incidence of strip end flip and to postulate possible mechanisms in interpreting the strip end flip phenomenon under misaligned conditions. By adopting the camber condition from a particular on-site strip end and by assuming different degree of misalignment of work roll pair, the numerical model not only predicted the strip end shape, but also reproduced and visualized the strip end flip. The simulated results showed that the occurrence of strip end flip was primarily due to the collision of the strip end side with the side guide arms and was susceptible to the misaligned conditions of the work roll pair. The numerical model provides an effective tool to systematically explore the possible causes of the strip end flip. With appropriated measures, the occurrence of strip end flip can thus be limited and reduced.
机译:在轧机支架的整理辊组件中的混合常常在完成轧制过程中的不稳定性,例如蛇运动,侧面行走和条带端翻转。在这些问题中,条带终端翻转是最严重的。它通常发生在钢带端,从先前铣刀支架的卷咬合释放并进一步进入下一个立体。结果,它可能导致条带端的折叠和/或导致对精加工辊表面的严重损坏。这将显着恶化条带质量并导致生产的严重后果。由于现场观察的发生和困难,这种现象在整理轧制中是一个麻烦的问题。这项工作的目的是分析整理工作辊的未对准对条带末端翻转的发病率的影响,并假设在未对准条件下解释条带终端翻转现象的可能机制。通过采用来自特定现场条带的弧形条件并通过假设工作辊对的不同程度的未对准,数值模型不仅预测了条带末端形状,而且还预测了条带端部翻转的和可视化。模拟结果表明,条带端翻转的发生主要是由于带侧引导臂的条带端侧的碰撞,并且易于工作辊对的未对准条件。数值模型提供了一种有效的工具来系统地探索条带端翻转的可能原因。通过适当的措施,因此可以限制和降低条带端翻转的发生。

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