首页> 外文会议>Conference on Computational Modeling of Materials, Minerals and Metals Processing, Sep 23-26, 2001, San Diego, California, USA >MODEL FOR STRESS, TEMPERATURE AND PHASE TRANSFORMATION BEHAVIOUR OF STEELS ON RUN-OUT TABLE IN HOT STRIP MILL
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MODEL FOR STRESS, TEMPERATURE AND PHASE TRANSFORMATION BEHAVIOUR OF STEELS ON RUN-OUT TABLE IN HOT STRIP MILL

机译:热轧带钢跳出台上钢的应力,温度和相变行为模型

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摘要

A mathematical model was developed considering non-symmetric cooling and stress distribution in both thickness and width direction of strip on a run-out table of hot strip mill. In order to solve a transient heat transfer equation including the heat evolved from phase transformation, a finite element method coupled with thermodynamic and kinetic analyses was applied. The heat capacity of each phase and heat evolution due to phase transformation were obtained from the thermodynamic analysis of the Fe-C-Mn-Si system based on a sublattice model. The phase transformation kinetics of the steels was derived by using an inverse additivity technique with continuous cooling experiments. Heat transfer coefficients of strips on the run-out table were, by applying an inverse method, determined from the actual mill data under various cooling conditions. As for the stress analysis, the density change of strip due to cooling and phase transformation, and the transformation superplasticity were considered. A constitutive equation for the transformation superplasticity, which is related to the phase transformation kinetics and the internal stress due to the density change of strip, was applied. A finite element method was adopted to calculate the deformation behaviour of strip on a run-out table of hot strip mill. Using the models, the temperature-phase-deformation history and distribution of a strip on the run-out table was calculated.
机译:在热轧机的跳动台上,建立了考虑带材厚度和宽度方向上非对称冷却和应力分布的数学模型。为了求解包括相变产生的热量的瞬态传热方程,采用了有限元方法,并结合了热力学和动力学分析。通过基于亚晶格模型的Fe-C-Mn-Si体系的热力学分析,获得了各相的热容量和由于相变而产生的热量。通过使用逆加性技术和连续冷却实验,得出了钢的相变动力学。通过应用逆方法,在各种冷却条件下根据实际轧机数据确定带钢在跳动台上的传热系数。对于应力分析,考虑了冷却和相变引起的带材密度变化以及相变超塑性。应用了相变动力学的本构方程,该方程与带钢的密度变化引起的相变动力学和内应力有关。采用有限元法计算了带钢在热轧机跳动台上的变形行为。使用这些模型,计算出了温度相变历史和在跳动台上的钢带分布。

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