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Development of hot rolling practices for lithographic sheet using a thermo-mechanical and microstructural model of a reversing hot finishing mill

机译:利用可逆热精轧机的热机械和微观结构模型开发平版印刷版材的热轧实践

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摘要

Commercial purity AA1050 alloy, which is used for lithographic sheet, is mostly hot rolled using a conventional hot-line consisting of a reversing hot breakdown mill and a tandem hot finishing mill (HFM). The production of lithographic sheet using an alternative hot-line with a single stand (reversing) HFM which requires less capital cost is examined. A model of the single stand HFM (with front and rear coilers) was developed to predict the thermo-mechanical histories and the Zener-Hollomon parameter. Microstractural relationships were incorporated into the model to evaluate the effects of different rolling conditions and thermo-mechanical histories on the recrystallisation behaviour. The model was validated with experimental results and then used to develop suitable hot rolling practices for lithographic sheet. Simulations of hot rolling showed that process conditions could be altered to minimize partial recrystallisation and to promote a more homogeneous microstructure. Favourable rolling practices can be readily determined, thereby reducing the need for expensive and often ad hoc plant trials.
机译:用于平版印刷片材的商业纯度AA1050合金大多使用常规热线进行热轧,该热线包括可逆热轧机和串联热精轧机(HFM)。考察了使用具有单个机架(可翻转)HFM的替代热线生产平版印刷版材的方法,该生产线需要较少的资本成本。开发了单机架HFM(带有前后卷取机)的模型,以预测热机械历史和齐纳-所罗门参数。将微观结构关系纳入模型中,以评估不同轧制条件和热机械历史记录对再结晶行为的影响。该模型已通过实验结果验证,然后用于开发适用于平版印刷版材的热轧方法。热轧的模拟表明,可以改变工艺条件,以最大程度地减少部分重结晶并促进更均匀的显微组织。易于确定有利的轧制方法,从而减少了对昂贵且经常为临时性的工厂试验的需求。

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