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High-speed rolling by hybrid-lubrication system in tandem cold rolling mills

机译:串列式冷轧机的混合润滑系统高速轧制

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Lubrication is one of the most important factors for improving the productivity of tandem cold rolling mills, as it is possible to increase the rolling speed of thin gauge steel strips and prevent chatter when rolling materials with high deformation resistance. In this study, a new hybrid lubrication system is proposed and its effectiveness is clarified. The system is based on a lubricant recirculation system combined with a system for flexible lubrication control. The key to realizing the new lubricant system is control of plate-out oil film formation on the strip surface under high-speed rolling conditions. The plate-out oil film formation of emulsions is investigated, and the conditions for achieving a sufficient plate-out oil film are clarified. The time-dependent property, oil droplet size, and emulsion concentration are found to have significant effects on plate-out behavior. In addition, the conditions for practical application of hybrid lubrication systems are discussed from the viewpoint of realizing effective plate-out control. A new hybrid lubrication system was investigated, and it successfully enabled flexible controllability of lubrication conditions and achieved the high-speed stable rolling, while maintaining an oil consumption rate equal to that of recirculation systems. (C) 2014 Elsevier B.V. All rights reserved.
机译:润滑是提高串联冷轧机生产率的最重要因素之一,因为在轧制抗变形能力高的材料时,可以提高薄规格钢带的轧制速度并防止颤动。在这项研究中,提出了一种新的混合润滑系统,并阐明了其有效性。该系统基于润滑剂再循环系统以及用于灵活润滑控制的系统。实现新润滑剂系统的关键是在高速轧制条件下控制带钢表面的积垢油膜形成。研究了乳液的析出油膜形成,并且阐明了获得足够的析出油膜的条件。发现随时间变化的特性,油滴大小和乳液浓度对积垢行为具有重要影响。此外,从实现有效的积垢控制的角度讨论了混合润滑系统的实际应用条件。研究了一种新的混合润滑系统,它成功地实现了润滑条件的灵活可控性,并实现了高速稳定的轧制,同时保持了与再循环系统相同的油耗率。 (C)2014 Elsevier B.V.保留所有权利。

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