首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Characterization of thermal performance, flux transmission performance and optical properties of MAX phase materials under concentrated solar irradiation
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Characterization of thermal performance, flux transmission performance and optical properties of MAX phase materials under concentrated solar irradiation

机译:浓缩太阳照射下最大相材料的热性能,磁通传动性能和光学性能的表征

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摘要

In this study, thermal performance and optical properties of MAX phase materials subjected to high concentrated flux are characterized. A new indoor facility is developed that allows for investigation of the independent effect of irradiance and temperature on the thermal performance of the material. Two MAX namely, Titanium Aluminum Carbide (Ti(2)AIC) and Chromium Aluminum Carbide (Cr2AlC) are examined in this study. Both materials are exposed to high concentrated homogenized flux in the range of 527.2 kWm(-2) - 917 kWm(-2) for 1000 s and 3000 s using a high flux solar simulator while their temperatures are maintained at 60 degrees C +/- 5 degrees C via water-cooled heat flux gage. Materials' surface characterization before and after irradiation is carried out using X-ray diffraction, scanning electron microscopy and X-ray fluorescence analysis. It is found that both materials have excellent resistance to high concentrated flux, but that Ti(2)AIC shows higher light scattering due to the oxidation of its surface. It is also found that the variations in the optical properties over time do not depend on the selected incident flux level. The thermal performance of Ti2AlC and Cr2AlC was found to varies in the 0.56 - 0.68 and 0.60 - 0.67 range, respectively, for selected flux levels. Flux transmission performance of both materials is not affected by exposure to high concentrated flux.
机译:在该研究中,特征在于经受高浓缩通量的最大相材料的热性能和光学性能。开发了一个新的室内设施,可以调查辐照度和温度对材料热性能的独立效果。两项最大即,在本研究中检查了碳化钛碳化钛(Ti(2)AIC)和铬铝合金(CR2ALC)。使用高磁通太阳能模拟器,在527.2kWm(-2)-917kWm(-2)的范围内,在527.2kWm(-2)-917kWm(-2)的范围内,两种材料在527.2kWm(-2)-917kW(-2)的范围内。它们的温度保持在60摄氏度+/- - 通过水冷热通量测量仪5℃。使用X射线衍射,扫描电子显微镜和X射线荧光分析进行辐射前后的材料表面表征。结果发现,两种材料具有优异的对高浓缩通量的抵抗力,但是Ti(2)AIC由于其表面的氧化而显示出更高的光散射。还发现,随着时间的推移,光学性质的变化不依赖于所选择的入射通量水平。发现Ti2ALC和CR2ALC的热性能分别在0.56-0.68和0.60-0.67范围内变化,用于选择的通量水平。两种材料的助熔剂透射性能不受高浓缩通量的影响。

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