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Effect of minimum friction coefficient on vibration stability in cold rolling mill

机译:最小摩擦系数对冷轧机中振动稳定性的影响

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摘要

Mill chatter is a major restriction in the high-speed rolling of high-strength and thin strips. To maintain mill stability, the friction coefficient must be kept within a certain range. Unfortunately, there is no model to calculate the lower limit of the friction. In this paper, a new model is developed to capture the minimum friction coefficient. This model is proposed based on mixed lubrication theory and monotonicity analysis in the friction curve. The verification results showed that the established model could accurately predict the minimum friction and the friction balance in tandem rolling mills. The model was utilized to design the optimal rolling conditions to expand the stability range of the friction and improve mill vibration stability.
机译:轧机颤振是高强度薄带高速轧制的主要限制因素。为了保持磨机的稳定性,摩擦系数必须保持在一定范围内。不幸的是,目前还没有计算摩擦下限的模型。本文提出了一种新的模型来捕捉最小摩擦系数。该模型基于混合润滑理论和摩擦曲线的单调性分析。验证结果表明,所建立的模型能够准确预测连轧机组的最小摩擦和摩擦平衡。利用该模型设计了最佳轧制条件,以扩大摩擦稳定性范围,提高轧机振动稳定性。

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