Rewetting Analysis of Hot Moving Surface by Round Water Jet Impingement

A. Sharma, Mayank Modak, S. Sahu
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引用次数: 1

Abstract

Impinging jets are commonly utilized in the run-out table (ROT) cooling in the hot rolling process in steel manufacturing industries. The phenomenon of rapid cooling of a sufficiently hot surface is termed as the quenching. The present paper reports the rewetting behavior of 0.15 mm thick hot moving stainless steel foil (SS-304) by circular impinging jet from bottom side through experimental investigation. The transient temperature of the hot foil is recorded by using thermal imaging camera (A655sc, FLIR system). Tests are performed for a varied range of Reynolds number (Re = 2500–10000), nozzle to plate distance (z/d = 6), moving plate velocity (0–40 mm/s) and initial surface temperature 500±10 °C. Transient temperature obtained from thermal imaging camera is used to evaluate rewetting time and rewetting velocity. Based on the experimental investigation correlation has been proposed to predict non-dimensional rewetting velocity as a function of various parameters, namely, Reynolds number, non-dimensional axial distance and moving plate velocity.
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圆形水射流冲击热运动表面的再润湿分析
冲击射流是炼钢行业热轧过程中常用到的一种冷却装置。足够热的表面迅速冷却的现象称为淬火。本文通过实验研究了0.15 mm厚热动不锈钢箔(SS-304)在底部圆形冲击射流作用下的再润湿行为。利用热像仪(A655sc, FLIR系统)记录热箔的瞬态温度。在雷诺数(Re = 2500-10000)、喷嘴到板的距离(z/d = 6)、移动板的速度(0-40 mm/s)和初始表面温度500±10°C的不同范围内进行了测试。利用热像仪获取的瞬态温度来评价复湿时间和复湿速度。在实验研究的基础上,提出了以雷诺数、无量纲轴向距离和运动板速度为参数预测无量纲再润湿速度的相关关系。
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