Overview of materials and coatings emission coefficient control methods

O. Dekusha, Svitlana Kovtun, Z. Burova
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Abstract

The emissivity of a coating and materials determines the intensity of radiation heat exchange on the surface of the object under study. Therefore experimental determination is important to ensure the necessary thermal protection characteristics of structures. The article considers methods of emissivity control, which are currently regulated by the main standards ASTM E408-13, ISO 9050:2003, C835-06, C1371-15. The methods of experimental determination of the emissivity can be divided into two large groups: optical and thermal. Spectrometric is the most widespread optical method. The technique of spectrometric research in determining the curve of specular reflection, measured in a wide range of wavelengths at an angle of incidence of the radiation close to normal. Based on the obtained results, the average value of the normal and hemispherical emissivity of the surface is calculated. Among the thermal methods of experimental determination of the emissivity the following have become widespread: radiation, calorimetric, regular mode method, and the method of continuous heating at a constant rate. The stationary systems with a wide range of research temperatures and portable express devices for control at temperatures close to room temperature are used to measure the emissivity. In stationary systems for measuring the emissivity, which apply thermal methods, heat fluxes between the object under investigation and some emitter, as well as the temperature of the structure elements, are usually determined. But these methods cannot be used in the control of products. Therefore, it is promising to develop a method for measuring the emissivity which will non-destructive and in same do not require additional standard samples for comparations. Keywords: express control, emissivity, emissometers, spectrophotometers, reflectometers
材料和涂料排放系数控制方法综述
涂层和材料的发射率决定了所研究物体表面的辐射热交换强度。因此,实验测定对于保证结构的必要热防护特性是非常重要的。本文考虑了目前由主要标准ASTM E408-13, ISO 9050:2003, C835-06, C1371-15规定的发射率控制方法。发射率的实验测定方法可分为光学和热两大类。光谱法是应用最广泛的光学方法。光谱学研究确定镜面反射曲线的技术,在宽波长范围内以接近法线的辐射入射角进行测量在此基础上,计算了表面法向发射率和半球面发射率的平均值。在实验测定发射率的热方法中,下列方法已得到广泛应用:辐射法、量热法、规则模式法和以恒定速率连续加热法。使用具有广泛研究温度范围的固定系统和可在接近室温的温度下控制的便携式快速装置来测量发射率。在采用热方法测量发射率的固定系统中,通常要确定被测物体与某个发射器之间的热流,以及结构元件的温度。但这些方法不能用于产品的控制。因此,开发一种测量发射率的方法是有希望的,这种方法将是非破坏性的,并且同样不需要额外的标准样品进行比较。关键词:快速控制,发射率,发射计,分光光度计,反射计
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