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A novel procedure for the evaluation of new refractories for aluminium furnaces

机译:一种评估铝炉新耐火材料的新方法

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摘要

Refractory materials for aluminium industry are designed to be resistant to different degrees of thermal, mechanical and chemical wear. The refractory wall thickness reduction during service life increases the heat losses through walls, decreasing the thermal efficiency of the furnace. Last developments are focused on obtaining refractories with better performance and improved insulation properties.udOn this regard, a novel procedure has been developed to compare the thermal and chemical performance of different refractories. This procedure includes comparing the resistance of the refractory to molten aluminium, determining corundum and cracks appearance, and measuring the internal and external wall temperatures of a testing furnace using thermography. These temperature measurements make possible to estimate the wall thermal conductivity together with its evolution in time and also validate its simulation modelling in order to be used in future furnace designs. Two refractories have been tested by this procedure for comparative purposes; a commercial alumina castable and an improved alumina castable with better insulation properties
机译:铝工业的耐火材料经设计可抵抗不同程度的热,机械和化学磨损。使用寿命期间耐火材料壁厚的减小会增加通过壁的热损失,从而降低炉子的热效率。最近的发展集中在获得具有更好性能和改善隔热性能的耐火材料上。 ud在这方面,已经开发了一种新颖的方法来比较不同耐火材料的热性能和化学性能。该程序包括比较耐火材料对熔融铝的抵抗力,确定刚玉和裂纹的外观以及使用热像仪测量测试炉的内壁和外壁温度。这些温度测量值可以估算壁的导热率及其随时间的变化,还可以验证其模拟模型,以便在将来的炉子设计中使用。为了比较目的,已经用这种方法测试了两种耐火材料。商业化的可浇铸氧化铝和具有更好绝缘性能的改良型可浇铸氧化铝

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