Compositional Dependence of Normal Spectral Emissivity of Molten Cu-Fe Alloy

Normal spectral emissivity of molten Cu-Fe alloy with different compositions was measured at the wavelength of 807 nm using an electromagnetic levitator superimposed with a static magnetic field, which is capable of producing accurate normal spectral emissivity data because the applied static magnet...

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Veröffentlicht in:Metallurgical and materials transactions. B, Process metallurgy and materials processing science Process metallurgy and materials processing science, 2019-10, Vol.50 (5), p.2454-2458
Hauptverfasser: Shoji, Eita, Takahashi, Ryuji, Isogai, Shosei, Ito, Naoto, Kubo, Masaki, Tsukada, Takao, Fukuyama, Hiroyuki
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Sprache:eng
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Zusammenfassung:Normal spectral emissivity of molten Cu-Fe alloy with different compositions was measured at the wavelength of 807 nm using an electromagnetic levitator superimposed with a static magnetic field, which is capable of producing accurate normal spectral emissivity data because the applied static magnetic field suppresses translational and surface oscillations of a levitated sample to consequently reduce measurement uncertainties. Cu-Fe alloy samples used in this study were Cu 97 Fe 3 , Cu 93 Fe 7 , Cu 92 Fe 8 , Cu 90 Fe 10 , Cu 80 Fe 20 , and Cu 70 Fe 30 . The strength of the static magnetic field and temperature ranged from 3.0 to 3.5 T and 1350 to 1750 K, respectively. The measured normal spectral emissivity indicated negligible temperature dependence in a wide temperature range. In contrast, the compositional dependence indicated a distinct tendency in which the emissivity increased markedly with the composition of Fe up to 10 at pct.
ISSN:1073-5615
1543-1916
DOI:10.1007/s11663-019-01638-5