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Spray Cooling Unit for Heat Treatment of Stainless Steel Sheets

机译:用于不锈钢板材的热处理喷雾冷却装置

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Stainless steel sheets are successively heated to a temperature of 1150°C and cooled until ambient temperature during the production process. Requirements for high cooling rates of stainless steel sheets producers lead to use water as a cooling medium. The information about cooling intensity (heat transfer coefficient) of different nozzles configurations is necessary for designing cooling sections. Although many researchers deal with water spray cooling, actually a general correlation for predicting heat transfer coefficient for wide range of nozzles configurations does not exists. That is the reason why heat transfer coefficient for different nozzles configurations can be only obtained by laboratory measurements. Heat transfer coefficient is mostly influenced by water impingement density and impact velocity. However other factors e.g. water temperature and velocity of the sheet can influence the heat transfer coefficient. Optimized design of the cooling unit with high cooling intensity and low water consumption was achieved by appropriate choice of these parameters. The moving experimental sheet was cooled from a temperature of 900°C to a temperature of 50°C with various configurations of nozzles. The tests shown that heat transfer coefficient was increasing with water impingement density and impact velocity. Increasing water temperature from 20°C to 80°Ccaused a decrease of the heat transfer coefficient and Leidenfrost temperature. The effect of velocity is negligible when velocities are between 25 and 100 m/min. The cooling unit was designed according to laboratory measurements to fulfill the stainless steel producer's requirements. The measurements which were done in an industrial plant confirmed the accuracy of heat transfer coefficient obtained in the laboratory. The maximum difference between laboratory and plant measurements was 15%.
机译:不锈钢板连续加热至1150℃的温度,并在生产过程中冷却至环境温度。不锈钢板材生产商的高冷却速率要求导致使用水作为冷却介质。用于设计冷却部分是必要的不同喷嘴配置的冷却强度(传热系数)的信息。虽然许多研究人员处理水喷雾冷却,但实际上,用于预测各种喷嘴配置的传热系数的一般相关性不存在。这就是为什么不同喷嘴配置的传热系数可以仅通过实验室测量获得的传热系数的原因。传热系数主要受水冲击密度和冲击速度的影响。然而其他因素例如水温和片材的速度可以影响传热系数。 Optimized design of the cooling unit with high cooling intensity and low water consumption was achieved by appropriate choice of these parameters.将移动的实验片在900℃的温度下冷却至50℃的温度,具有各种喷嘴。试验表明,热传递系数随着水冲击密度和冲击速度而增加。将水温从20°C增加至80°CCAUSED传热系数和莱顿福利温度的降低。当速度在25到100米/分钟之间时,速度的效果可忽略不计。冷却单元根据实验室测量设计,以满足不锈钢生产商的要求。在工业设备中完成的测量证实了实验室中获得的传热系数的准确性。实验室和植物测量之间的最大差异为15%。

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