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Experimental Determination of Heat Transfer Coefficients in Roll Bite and Air Cooling for Computer Simulations of 1100 MPa Carbon Steel Rolling

机译:1100MPa碳钢轧制计算机模拟辊咬合辊咬合系数的传热系数实验测定

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In modeling of hot rolling pass schedules the heat transfer phenomena have to be known. Radiation to ambient, between rolls and a steel slab as well as heat transfer in contacts must be considered to achieve accurate temperature distribution and thereby accurate material behavior in simulations. Additional heat is generated by friction between the slab and the work roll and by plastic deformation. These phenomena must be taken into account when the effective heat transfer coefficient is determined from experimental data. In this paper we determine the effective heat transfer coefficient at the contact interface and emissivity factor of slab surface for 1100MPa strength carbon steel for hot rolling simulations. Experimental pilot rolling test were carried out and slab temperatures gathered right below the interface and at the mid thickness of the slab. Emissivity factor tests were carried out in the same manner but without rolling. Experimental data is utilized to derive contact heat transfer coefficient at the interface and emissivity factor of slab surface. Pilot rolling test is reproduced in FE-analysis to further refine the heat transfer coefficient and emissivity factor. Material mechanical properties at rolling temperatures were determined by Gleeble? thermo-mechanical simulator and IDS thermodynamic-kinetic-empirical software.
机译:在热轧通行证的建模中,必须知道传热现象。必须考虑在卷和钢板之间的辐射和钢板之间以及在触点中的传热之间,以实现精确的温度分布,从而在模拟中准确的材料行为。通过板坯和工作辊之间的摩擦和通过塑性变形产生额外的热量。当从实验数据确定有效的传热系数时,必须考虑这些现象。本文在1100MPA强度碳钢中确定了用于热轧模拟的1100MPA强度碳钢的接触界面和发射率因子的有效传热系数。进行实验导辊测试,并在界面下方和板的中间厚度聚集的板坯温度。发射率因子测试以相同的方式进行但不滚动。实验数据用于在平板表面的界面和发射率因子处导出接触传热系数。飞行员滚动试验在Fe分析中再现,以进一步优化传热系数和发射率因子。轧制温度的材料机械性能通过GLELBE测定?热机械模拟器和ID热力学 - 动力学 - 经验软件。

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