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Optimizing the preheating temperature of hot rolled slab from the perspective of the oxidation kinetic

机译:从氧化动力学的角度看热轧板的预热温度

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摘要

Decreasing the preheating temperature is an effective step to control the energy consumption in the hot rolling process. In order to obtain the lowest preheating temperature to prepare enough thickness of oxide scale in the hot rolling process, the oxidation resistance of commercial steel samples with different Al and Si contents were investigated in this paper. The results indicate that both Al and Si based oxides form at the steel-oxides interface as diffusion barrier but Al provide stronger diffusion resistance than Si in the diffusion-controlling oxidation region. Meanwhile, a three-dimensional oxidation kinetic model has been adopted to depict the oxidation behavior of four types of commercial steel. The oxidation process of automotive steel sample containing with low alloy elements is kinetically determined by interface chemical reaction. Its activation energy is 55.2?±?6.9?kJ/mol. As for silicon steel containing with relative high alloy elements, its controlling process is determined by diffusion step at low temperature and controlled by chemical reaction rate at high temperature. In order to obtain enough thickness of oxide scale, the lowest preheating temperature of different types steel range from high to low should be the steel with high content of Al (1180?°C), the steel with high content of Si and low content of Al (1130?°C) and the steel with high contents of Si and Al (1030?°C).
机译:降低预热温度是控制热轧过程中能量消耗的有效步骤。为了在热轧过程中获得足够的预热温度以制备足够厚度的氧化物尺度,在本文中研究了商业钢样品的氧化性和Si含量。结果表明,在钢 - 氧化物界面上的Al和Si基氧化物形式为扩散屏障,但Al在扩散控制氧化区域中提供比Si更强的扩散电阻。同时,采用了三维氧化动力学模型来描绘四种商业钢的氧化行为。含有低合金元素的汽车钢样品的氧化过程是通过界面化学反应的动力学。其激活能量为55.2?±6.9?kj / mol。对于含有相对高合金元件的硅钢,其控制过程通过低温下的扩散步骤测定并通过高温的化学反应速率控制。为了获得足够的氧化物尺寸厚度,不同类型的钢的最低预热温度从高到低的钢的范围应为钢的含量高(1180Ω°C),钢含量高,含量低Al(1130?°C)和具有高含量的钢和al(1030Ω°C)。

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