Effects of Both Crystallisation and Iron Oxides on the Radiative Heat Transfer in Mould Fluxes
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概要
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To suggest a guideline for designing a mould flux for mild cooling, the radiative heat transfer characteristic of mould fluxes has been investigated using apparent reflectivity and transmissivity data on the basis of an optical-process model. The apparent reflectivities and transmissivities of mould fluxes were measured systematically as functions of the degree of crystallinity and the concentration of iron oxides, where the degree of crystallinity ranged between 0% and about 60%, and the concentration of iron oxides ranged between 0% and 2.0% on a mass basis. The apparent reflectivities and transmissivities were measured over the wavelength range 300–2600 nm using a spectrophotometer with an integrating sphere. It has been found that crystallisation for mould fluxes increases the apparent reflectivity and decreases the apparent transmissivity, and that additions of iron oxides increase the apparent absorptivity of crystallised mould fluxes and instead decrease the apparent reflectivity. The radiative heat transfer characteristic has been evaluated using apparent reflectivity and transmissivity data on the basis of an optical-process model, which has suggested that crystallisation of mould fluxes leads to mild cooling due to increased apparent reflectivities and decreased apparent transmissivities. Furthermore, it has also been suggested that crystallised mould fluxes with no iron oxides can reduce radiative heat transfer even more by decreasing the apparent absorptivity and increasing the apparent reflectivity.
- 社団法人 日本鉄鋼協会の論文
- 2009-11-15
著者
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HAYASHI Miyuki
Department of Chemistry and Materials Science, Tokyo Institute of Technology
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KOBAYASHI Yoshinao
Department of Gastroenterology and Hepatology, Division of Clinical Medicine and Biomedical Science,
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SUSA Masahiro
Department of Metallurgy and Ceramics Science, Tokyo Institute of Technology
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Kobayashi Yoshinao
Department Of Gastroenterology And Hepatology Division Of Clinical Medicine And Biomedical Science I
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Kobayashi Yoshinao
Department Of Metallurgy And Ceramics Science Graduate School Of Science And Engineering Tokyo Insti
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Susa Masahiro
Department Of Metallurgy And Ceramics Science Graduate School Of Science And Engineering Tokyo Insti
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Susa Masahiro
Department Of Metallurgical Engineering Tokyo Institute Of Technology
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Hayashi Miyuki
Department Of Chemistry And Materials Science Tokyo Institute Of Technology
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ENDO Rie
Department of Metallurgy and Ceramics Science, Graduate School of Science and Engineering, Tokyo Ins
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KUSHIMOTO Atsushi
Department of Metallurgy and Ceramics Science, Tokyo Institute of Technology
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TOYOTA Hiroaki
Department of Metallurgy and Ceramics Science, Tokyo Institute of Technology
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Endo Rie
Department Of Metallurgy And Ceramics Science Graduate School Of Science And Engineering Tokyo Insti
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Toyota Hiroaki
Department Of Metallurgy And Ceramics Science Tokyo Institute Of Technology
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Kushimoto Atsushi
Department Of Metallurgy And Ceramics Science Tokyo Institute Of Technology
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Hayashi Miyuki
Department Of Chemistry And Applied Chemistry Faculty Of Science And Engineering Saga University
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