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Infrared thermography of TMCP microalloyed steel skelp at upcoiler and its application in quantifying laminar jet/skelp interaction

机译:TMCP微合金钢海带在卷取机上的红外热成像及其在定量层流射流/海带相互作用中的应用

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A series of area temperature maps were obtained from the upper surface of a moving thermomechanical controlled processed (TMCP) microalloyed steel skelp following laminar cooling using an infrared video camera. In addition, an emissivity probe was used to obtain both the emissivity and temperature at the mid-face of the moving skelp. Properly sampled infrared camera temperature measurements correlated well with both the measured probe temperature and with the process control pyrometer. A finite element thermal model of the system, in conjunction with the transverse skelp temperature profiles obtained from the infrared camera, was used to quantify the size and shape of the laminar cooling water jet's direct impact zone on the skelp. The region experiencing direct water impact was found to be constrained by the residual water present on the moving skelp.
机译:在使用红外摄像机进行层流冷却后,从移动的热机械控制加工(TMCP)微合金钢海带的上表面获得了一系列区域温度图。另外,使用发射率探针获得移动的海带中间面的发射率和温度。正确采样的红外热像仪温度测量值与测得的探头温度和过程控制高温计都具有良好的相关性。系统的有限元热模型,结合从红外热像仪获得的横向海藻温度分布图,用于量化海藻层流冷却水射流对海藻直接冲击区域的大小和形状。发现受到直接水冲击的区域受到活动海带上残留水的限制。

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