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Numerical Study of the Effect of Nozzle Arrangement on Cooling Process in Running Hot Steel Strip after Hot Rolling

机译:热轧带钢运行后喷嘴排列方式对冷却过程影响的数值研究

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In the steel strip manufacturing process, a high temperature steel strip at a temperature of more than 800°C is rapidly cooled by circular impinging water jets. The cooling rate is an important parameter that characterizes the desired microstructure and mechanical properties of the steel strip. In the cooling process, the nozzle arrangement of the water jet system can be easily changed as necessary and heat transfer characteristics can be controlled by adjusting the nozzle arrangement. In this study, inline and staggered nozzle arrangements are adopted. By using the numerical method developed in a previous study, cooling behaviors such as the temperature distribution of the plate surface, the cooling history of the plate, and the average heat flux are determined and compared quantitatively for each nozzle arrangement.
机译:在钢带制造过程中,温度超过800°C的高温钢带通过圆形冲击水射流迅速冷却。冷却速率是表征钢带所需组织和机械性能的重要参数。在冷却过程中,可以根据需要容易地改变水喷射系统的喷嘴布置,并且可以通过调节喷嘴布置来控制传热特性。在这项研究中,采用了串联和交错的喷嘴布置。通过使用先前研究中开发的数值方法,可以确定冷却行为,例如板表面的温度分布,板的冷却历史以及平均热通量,并针对每种喷嘴布置进行定量比较。

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