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Emissivity characteristics of roughened aluminum alloy surfaces and assessment of multispectral radiation thermometry (MRT) emissivity models

机译:粗糙铝合金表面的发射率特性和多光谱辐射温度计(MRT)发射率模型的评估

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Experiments were performed to examine the emissivity characteristics of aluminum alloy samples over the spectral range of 2.05 to 4.72 μm and temperatures of 600, 700 and 800 K. AL 1100, 7150, 7075 and 2024 samples were tested which possessed polished, 6- and 14-μm surface finishes. Additionally, extruded and saw-cut samples were tested to examine the effects of extreme roughness on emissivity. For the polished, 6- and 14-μm samples, the emissivity decreased appreciably between 2.05 and 3.5 蘭, and increased slightly between 3.5 and 4.72 μm. Spectral variations were far less pronounced for the extruded and saw-cut surfaces. Eighteen MRT emissivity models were examined for accuracy in temperature measurement. Drastic changes in the emissivity distribution precluded the use of a single function to accurately represent every band of the measured spectrum. Overall, two relatively simple models provided the best overall predictions for different alloys and temperatures. These are the same models that yielded the best overall results for polished aluminum surfaces in a previous study by the authors. Despite the relative success of these models, this study points to a need to greatly enhance the measurement accuracy of radiation thermometers to meet the needs of the aluminum industry.
机译:进行实验以检查铝合金样品在2.05至4.72μm的光谱范围内以及600、700和800 K的温度下的发射率特性。测试了抛光,6和14抛光的AL 1100、7150、7075和2024样品-μm表面处理。此外,还对挤压和锯切的样品进行了测试,以检验极端粗糙度对发射率的影响。对于抛光的6和14微米样品,发射率在2.05至3.5兰之间显着下降,而在3.5至4.72μm之间则略有增加。挤压和锯切表面的光谱变化远没有那么明显。检查了18个MRT发射率模型的温度测量准确性。发射率分布的剧烈变化使得无法使用单个函数来精确表示所测量光谱的每个波段。总体而言,两个相对简单的模型针对不同的合金和温度提供了最佳的整体预测。作者在先前的研究中得出的抛光铝表面总体效果最佳的是相同的模型。尽管这些模型取得了相对成功,但本研究指出需要大大提高辐射温度计的测量精度,以满足铝工业的需求。

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