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首页> 外文期刊>Journal of Tribology >Rolling of Thin Strip and Foil: Application of a Tribological Model for 'Mixed' Lubrication
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Rolling of Thin Strip and Foil: Application of a Tribological Model for 'Mixed' Lubrication

机译:薄带和箔的轧制:摩擦学模型在“混合”润滑中的应用

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摘要

A mechanical model of cold rolling of foil is coupled with a sophisticated tribological model. The tribological model treats the "mixed" lubrication regime of practical interest, in which there is "real" contact between the roll and strip as well as pressurized oil between the surfaces. The variation of oil film thickness and contact ratio in the bite is found by considering flattening of asperities on the foil and the build-up of hydrodynamic pressure through the bite. The boundary friction coefficient for the contact areas is taken from strip drawing tests under similar tribological conditions. Theoretical results confirm that roll load and forward slip decrease with increasing rolling speed due to the decrease in contact ratio and friction. The predictions of the model are verified using mill trials under industrial conditions. For both thin strip and foil, the load predicted by the model has reasonable agreement with the measurements. For rolling of foil, forward slip is overestimated. This is greatly improved if a variation of friction through the bite is considered.
机译:箔冷轧的机械模型与复杂的摩擦学模型结合在一起。摩擦模型处理具有实际意义的“混合”润滑方案,其中在辊和带材之间以及表面之间的加压油之间存在“真正的”接触。咬合中油膜厚度和接触比的变化是通过考虑箔上的凹凸不平以及咬合中积聚的流体动力压力而发现的。接触区域的边界摩擦系数取自在类似摩擦学条件下的带材拉拔试验。理论结果证实,由于接触比和摩擦力的降低,轧制载荷和前滑量随着轧制速度的增加而降低。使用工业条件下的工厂试验验证了模型的预测。对于薄带和铝箔,模型预测的载荷与测量值具有合理的一致性。对于箔的卷制,过高的向前滑移。如果考虑通过咬合的摩擦变化,则将大大改善。

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