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3-D Transient Heat Transfer Analysis of Slab Heating Characteristics in a Reheating Furnace in Hot Strip Mills

机译:热带轧机再加热炉中板坯加热特性的3-D瞬态传热分析

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A three-dimensional mathematical transient heat transfer model for the prediction of temperature distribution within the slab has been developed by considering the thermal radiation in the walking-beam-type reheating furnace chamber. The steel slabs are heated up through the non-firing, preheating, lst-heating, 2nd-heating, and soaking zones in the furnace, respectively, where the furnace wall temperature is function of time. Comparison with the in-situ experimental data from Steel Company in Taiwan shows that the present heat transfer model works well for the prediction of thermal behavior of the slab in the reheating furnace. The effects of different skid button height (H=60mm, 90mm, and 120mm) and different gap distance between two slabs (S=50mm, 75mm, and 100mm) on the slab skid mark formation and temperature profiles are investigated. It is found that the skid mark severity decreases with an increase in the skid button height. The effect of gap distance is important only for the slab edge planes, while it is insignificant for the slab central planes.
机译:通过考虑步行梁型再加热炉室中的热辐射,开发了用于预测板坯内温度分布的三维数学瞬态传热模型。钢板分别通过炉内的非烧制,预热,LST加热,第二加热和浸泡区域加热,其中炉壁温度是时间的函数。与台湾钢铁公司的原位实验数据的比较表明,目前的传热模型适用于预测再加热炉中板的热行为。研究了不同的滑动按钮高度(H = 60mm,90mm和120mm)和两个板坯(S = 50mm,75mm和100mm)之间的不同间隙距离的影响,在板坯滑动标记形成和温度型材上进行了不同。发现SPIRD标记严重程度随着SPLID按钮高度的增加而降低。间隙距离的效果仅适用于平板边平面,而平板是微不足道的。

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