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Simulation of the Thermal Conditions of Rolls in a Wide-Strip Hot-Rolling Mill to Determine Their Effective Cooling Conditions

机译:模拟宽带热轧机中轧辊的热工况以确定其有效冷却条件

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摘要

An advanced procedure is developed for the thermal calculation of the rolls in a wide-strip hot-rolling mill (WSHRM). It combines the following two adaptive models: the thermal balance in the active surface layer in a roll per revolution and the thermal balance in the main zones of work and backup rolls with axisym-metric temperature fields with allowance for the heat exchange between a strip, rolls, the coolant, and the environment. In contrast to the well-known models, this advanced procedure calculates the bulk mean temperature and the thermal profile in a roll more accurately, since the temperature drop across the surface layer in this procedure is calculated allowing for the intensities of the contact and convective heat exchange between rolls. Data on the coefficient of heat transfer from rolls to the coolant supplied at an excess pressure of 1.0-1.5 MPa are presented for the first time. This procedure is used in a 2000 WSHRM and improves the transverse profile of hot-rolled strips due to a stabilized thermal profile in rolls.
机译:开发了一种用于宽带热轧机(WSHRM)中轧辊热计算的高级程序。它结合了以下两个自适应模型:一转一圈的有效表面层中的热平衡,以及具有轴对称温度场且允许带材之间进行热交换的工作和备用辊的主要区域中的热平衡,辊,冷却液和环境。与众所周知的模型相比,此高级过程可以更准确地计算出卷中的体均温度和热分布,因为在此过程中计算出的整个表层的温度降允许接触和对流热的强度卷之间的交换。首次显示了从轧辊到以1.0-1.5 MPa过压供应的冷却剂的热传递系数数据。此过程用于2000 WSHRM中,由于轧辊中的热分布稳定,因此可以改善热轧带钢的横向分布。

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