首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >Accurately Measuring the Infrared Spectral Emissivity of Inconel 601 Inconel 625 and Inconel 718 Alloys during the Oxidation Process
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Accurately Measuring the Infrared Spectral Emissivity of Inconel 601 Inconel 625 and Inconel 718 Alloys during the Oxidation Process

机译:在氧化过程中准确测量 Inconel 601、Inconel 625 和 Inconel 718 合金的红外光谱发射率

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摘要

Accurate measurement of the infrared spectral emissivity of nickel-based alloys is significant for applications in aerospace. The low thermal conductivity of these alloys limits the accuracy of direct emissivity measurement, especially during the oxidation process. To improve measurement accuracy, a surface temperature correction method based on two thermocouples was proposed to eliminate the effect of thermal conductivity changes on emissivity measurement. By using this method, the infrared spectral emissivity of Inconel 601, Inconel 625, and Inconel 718 alloys was accurately measured during the oxidation process, with a temperature range of 673–873 K, a wavelength range of 3–20 μm, and a zenith angle range of 0–80°. The results show that the emissivity of the three alloys is similar in value and variation law; the emissivity of Inconel 718 is slightly less than that of Inconel 601 and Inconel 625; and the spectral emissivity of the three alloys strongly increases in the first hour, whereafter it grows gradually with the increase in oxidation time. Finally, Inconel 601 has a lower emissivity growth rate, which illustrates that it possesses stronger oxidation resistance and thermal stability. The maximum relative uncertainty of the emissivity measurement of the three alloys does not exceed 2.6%, except for the atmospheric absorption wavebands.
机译:准确测量镍基合金的红外光谱发射率对于航空航天应用具有重要意义。这些合金的低导热性限制了直接发射率测量的准确性,尤其是在氧化过程中。为了提高测量精度,提出了一种基于两个热电偶的表面温度校正方法,以消除热导率变化对发射率测量的影响。通过使用这种方法,在氧化过程中准确测量了 Inconel 601、Inconel 625 和 Inconel 718 合金的红外光谱发射率,温度范围为 673-873 K,波长范围为 3-20 μm,天顶角范围为 0-80°。结果表明,三种合金的发射率在值和变化规律上相似;Inconel 718 的发射率略小于 Inconel 601 和 Inconel 625;三种合金的光谱发射率在第一个小时内强烈增加,然后随着氧化时间的增加而逐渐增加。最后,Inconel 601 具有较低的发射率增长率,这说明它具有更强的抗氧化性和热稳定性。除大气吸收波段外,三种合金发射率测量的最大相对不确定度不超过 2.6%。

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