首页> 外文会议>International Symposium on Liquid Metal Processing and Casting >Experimental und numerical investigations on cooling efficiency of Air-Mist nozzles on steel during continuous casting
【24h】

Experimental und numerical investigations on cooling efficiency of Air-Mist nozzles on steel during continuous casting

机译:钢连铸期间钢空气喷嘴冷却效率的实验性二数值研究

获取原文

摘要

Cooling strategies in continuous casting of steel can vary from rapid cooling to slow cooling, mainly controlled by adjusting the amount of water sprayed onto the surface of the product. Inadequate adjustment however can lead to local surface undercooling or reheating, leading to surface and inner defects. This paper focuses on cooling efficiency of Air-Mist nozzles on casted steel and the experimental and numerical prediction of surface temperature distributions over the product width. The first part explains the determination of heat transfer coefficients (HTC) on laboratory scale, using a so called nozzle measuring stand (NMS). Based on measured water distributions and determined HTC's for air-mist nozzles using the NMS, surface temperatures are calculated by a transient 2D-model on a simple steel plate, explained in the second part of this paper. Simulations are carried out varying water impact density and spray water distribution, consequently influencing the local HTC distribution over the plate width. Furthermore, these results will be interpreted with regard to their consequence for surface and internal quality of the cast product. The results reveal the difficulty of correct adjustment of the amount of sprayed water, concurrent influencing water distribution and thus changing HTC distribution and surface temperature.
机译:连续铸造钢的冷却策略可以从快速冷却到缓慢的快速冷却,主要通过调节喷涂到产品表面的水量来控制。调整不足,但导致局部表面过冷或再加热,导致表面和内部缺陷。本文侧重于铸钢上空气喷嘴的冷却效率,以及产品宽度上表面温度分布的实验性和数值预测。第一部分说明了使用所谓的喷嘴测量支架(NMS)在实验室规模上测定热传递系数(HTC)。基于测量的水分布和使用NMS的空气雾喷嘴确定的HTC,表面温度通过简单的钢板上的瞬态2D模型计算,在本文的第二部分中解释。模拟是不同的水冲击密度和喷水分布,因此影响板宽度的局部HTC分布。此外,这些结果将在其对铸造产品的表面和内部质量方面进行解释。结果揭示了难以调节喷涂水量,同时影响水分布,并改变HTC分布和表面温度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号