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首页> 外文期刊>International Journal of Thermophysics >Phase (Liquid/Solid) Dependence of the Normal Spectral Emissivity for Iron, Cobalt, and Nickel at Melting Points
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Phase (Liquid/Solid) Dependence of the Normal Spectral Emissivity for Iron, Cobalt, and Nickel at Melting Points

机译:铁,钴和镍在熔点的正态光谱发射率的相位(液体/固体)依赖性

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摘要

Normal spectral emissivities of liquid and solid Fe, Co, and Ni have been determined at their melting points at wavelengths from 650 to 800 nm and from 1000 to 1900 nm using an apparatus that consists of a cold crucible and diffraction grating spectroscopes. For all three metals, the emissivities of the liquid phases are slightly larger than those of the solid phases both in the visible and near-infrared regions. For iron, the near-infrared emissivities decreased progressively with each additional measurement series and settled down after three series. A possible explanation to this behavior is offered. The present results for iron were assessed by comparisons with previously reported results and with predictions based upon the Hagen–Rubens relation for the ratio of the emissivity of the liquid to that of the solid (ε Liquid/ε Solid). The measured emissivities for all three metals are in good agreement with previous results at and near the melting point. The results for ε Liquid/ε Solid in the near-infrared region demonstrate that the phase (liquid/solid) dependence of the infrared emissivity is consistent with that of the dc resistivity for all the metals at their melting points.
机译:已使用由冷坩埚和衍射光栅光谱仪组成的设备在650至800 nm和1000至1900 nm的波长处确定了液态和固态Fe,Co和Ni的正常光谱发射率。对于所有三种金属,在可见光区域和近红外区域中,液相的发射率均略大于固相的发射率。对于铁,每增加一个测量系列,近红外发射率便逐渐降低,并在三个系列后逐渐下降。提供了对此行为的可能解释。通过与先前报告的结果进行比较以及基于哈根-鲁本斯关系对液体发射率与固体发射率之比(εLiquid /εSolid )。三种金属的测量发射率均与先前在熔点及附近的结果相吻合。近红外区的εLiquid /εSolid 结果表明,所有金属在其红外发射率的相位(液/固)依赖性与直流电阻率的相一致。熔点。

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