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Local total and radiative heat-transfer coefficients during the heat treatment of a workpiece in a fluidised bed

机译:在流化床中对工件进行热处理期间的局部总传热系数和辐射传热系数

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The heat-transfer coefficients around a workpiece immersed in an electrically heated heat treatment fluidised bed were studied. A suspension probe designed to simulate a workpiece of complex geometry was developed to measure local total and radiative heat-transfer coefficients at a high bed temperature. The probe consisted of an energy-storage region separated by insulation from the fluidised bed, except for the measuring surface, and a multi-thermocouple measurement system. Experiments in the fluidised bed were performed for a fluidising medium of 120-mesh alumina, a wide temperature range of 110-1050 degrees C and a fluidising number range of 1.18-4.24. It was found that the workpiece surface temperature has a more significant effect on heat transfer than the bed temperature. The total heat-transfer coefficient at the upper surface of the workpiece sharply decreased at the start of heating, and then steadily increased as heating progressed, while a sharp decrease became a rapid increase and then a slow increase for the radiative heat-transfer coefficient. A great difference in the heat-transfer coefficients around the workpiece was observed. (c) 2006 Elsevier Ltd. All rights reserved.
机译:研究了浸没在电加热热处理流化床中的工件周围的传热系数。开发了一种用于模拟复杂几何形状的工件的悬浮探针,用于测量高床温下的局部总传热系数和辐射传热系数。该探头包括一个与存储区隔离的能量存储区域(除了测量表面)和一个多热电偶测量系统,该存储区域通过与流化床的绝缘层隔开。在流化床中对120目氧化铝的流化介质,110-1050摄氏度的宽温度范围和1.18-4.24的流化数范围进行了实验。已经发现,工件表面温度对热传递的影响比床层温度的影响更大。工件上表面的总传热系数在加热开始时急剧下降,然后随着加热的进行而稳定地增加,而急剧的下降则是辐射热传递系数的快速增加,然后缓慢增加。观察到工件周围的传热系数差异很大。 (c)2006 Elsevier Ltd.保留所有权利。

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