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首页> 外文期刊>International Journal of Thermophysics >Radiance Temperature and Normal Spectral Emittance (in the Wavelength Range of 1.5 to 5 μm) of Nickel at its Melting Point by a Pulse-Heating Technique
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Radiance Temperature and Normal Spectral Emittance (in the Wavelength Range of 1.5 to 5 μm) of Nickel at its Melting Point by a Pulse-Heating Technique

机译:脉冲加热技术测定镍在熔点时的辐射温度和光谱发射率(在1.5至5μm的波长范围内)

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摘要

The radiance temperature of nickel at its melting point was measured at four wavelengths (in the nominal range of 1.5 to 5 μm) by a pulse-heating technique using a high-speed fiber-coupled four-channel infrared pyrometer. The method was based on rapid resistive self-heating of a specimen from room temperature to its melting point in less than 1 s while simultaneously measuring the radiance emitted by it in four spectral bands as a function of time. A plateau in the recorded radiance-versus-time traces indicated melting of the specimen. The melting-point radiance temperature for a given specimen was determined by averaging the temperature measured along the plateau at each wavelength. The results for several specimens were then, in turn, averaged to yield the melting-point radiance temperature of nickel, as follows: 1316 K at 1.77 μm, 1211 K at 2.26 μm, 995 K at 3.48 μm, and 845 K at 4.75 μm. The melting-point normal spectral emittance of nickel at these wavelengths was derived from the measured radiance in each spectral band using the published value of the thermodynamic (true) melting temperature of nickel.
机译:通过使用高速光纤耦合四通道红外高温计的脉冲加热技术,在四个波长(标称范围为1.5至5μm)下测量了镍在其熔点的辐射温度。该方法基于样品在不到1 s的时间内从室温快速电阻自加热到其熔点,同时测量作为时间函数的四个光谱带中所发射的辐射。记录的辐射-时间轨迹中的平稳表明样品熔化了。给定样品的熔点辐射温度是通过在各个波长处沿平稳区测得的温度取平均值来确定的。然后依次将几个样品的结果取平均值,得出镍的熔点辐射温度,如下所示:1.77μm时为1316 K,2.26μm时为1211 K,3.48μm时为995 K,4.75μm时为845 K 。使用公开的镍热力学(真实)熔化温度值,可以从每个光谱带中测得的辐射度得出这些波长下镍的熔点法线光谱发射率。

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