STUDY OF THERMAL CONDUCTIVITY OF THE POROUS OXIDE LAYER

O. Resl, M. Chabičovský, H. Votavová
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引用次数: 2

Abstract

: Steel production and processing are connected with high temperatures. Due to a reaction between hot surface of the steel and oxygen contained in surrounding atmosphere, oxides are formed on the surface of the steel. Created layer of oxides is called scales and has influence on cooling and quality of steel. Thickness and structure of scale layer are influenced by chemical composition of the steel, temperature and atmosphere during oxidation. Scale layer can be considerably porous which has a significant influence on thermal conductivity of this layer, because air pores have much lower thermal conductivity compared to scales. Steel samples were prepared and porosity of scale layer was studied. Further, the average thermal conductivity of porous scale layer was determined for different regimes of oxidation by FEM modelling. It was found that the average thermal conductivity of porous scale layer is influenced not only by porosity of scale layer, but also by distribution of air pores, which can has a significant effect.
多孔氧化层的热导率研究
钢铁的生产和加工与高温有关。由于钢的热表面与周围大气中的氧发生反应,在钢的表面形成氧化物。形成的氧化物层被称为水垢,它对钢的冷却和质量有影响。氧化过程中钢的化学成分、温度和气氛对氧化层的厚度和结构都有影响。鳞片层可以相当多孔,这对该层的导热性有重大影响,因为空气孔隙的导热性比鳞片低得多。制备了钢试样,研究了水垢层的孔隙率。通过有限元模拟,确定了不同氧化状态下多孔垢层的平均导热系数。研究发现,多孔水垢层的平均导热系数不仅受水垢层孔隙率的影响,还受空气孔隙分布的影响,且影响显著。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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