Method for Emissivity Estimation of Metals

E. Filep, Dénes Nimród Kutasi, L. Kenéz
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引用次数: 3

Abstract

Abstract Knowledge of the surface emissivity of metals is becoming more and more important both from the material science, process modelling and control point of view. Previous research results have shown that the emissivity of most metals depends on the temperature of the surface. It has also been reported that the most important temperature region is between 300 – 1000 K degrees, where the change of the emissivity is the most intense, which is also the most significant from a process control point of view [1]. We also report temperature dependent emissivity observed during plasma nitriding of low alloy steels [2]. Related to one of our present research topics the study of the low alloy aluminum (AlMg1, AlMg3) emissivity has prooven relevant. In this article the developed emissivity estimation model is presented. In the first part a literature overview and the theoretical approach of the new method is discussed, followed by the experimental results for low alloy aluminium emissivity determination and a comparison with the results available in the literature.
金属发射率估算方法
从材料科学、工艺建模和控制的角度来看,对金属表面发射率的认识变得越来越重要。以前的研究结果表明,大多数金属的发射率取决于表面的温度。也有报道称,最重要的温度区域在300 - 1000 K度之间,该温度区域的发射率变化最为剧烈,从过程控制的角度来看也是最显著的[1]。我们还报道了在低合金钢等离子体氮化过程中观察到的温度相关发射率[2]。低合金铝(AlMg1, AlMg3)发射率的研究与我们目前的研究课题之一有关。本文介绍了建立的发射率估算模型。第一部分是文献综述和新方法的理论途径,其次是低合金铝发射率测定的实验结果,并与现有文献结果进行了比较。
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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