Academic Paper Archives


YR 2005

W.Nakao,H.Fukuyama
Gibbs Energy Change of Carbothermal Nitridation Reaction of ƒÁ-ALON and Its Thermodynamic Stability
J. Am. Ceram. Soc.,Vol.88[11](2005),p3170-3176
H.Kawamura,H.Fukuyama,M.Watanabe,T.Hibiya
Normal Spectral Emissivity of Undercooled Liquid Silicon
Meas. Sci. Technol. Vol 16(2005), p386-393


YR 2004

H.Fukuyama,H.Tabata,T.Oshima,K.Nagata
Determination of Gibbs Energy of Formation of Cuspidine (3CaOE2SiO2ECaF2) by Transpiration Method
ISIJ International, Vol.44[9](2004), p1488-1493
H.Fukuyama,K.Shimizu,K.Nagata
Determination of Gibbs Energies of Formation of the Ca-Pt-O Compounds from Electromotive Force Method Using CaF2 as Solid Electrolyte
High Temp. Mater. Processes, Vol. 23[5-6](2004), p335-341


YR 2003

W.Nakao,H.Fukuyama
Single Crystalline AlN Film Formed by Direct Nitridation of Sapphire Using Aluminum Oxynitride Buffer
J. Crystal Growth, Vol. 259(2003), p.302-308
E.Yamasue,M.Susa,H.Fukuyama,K.Nagata
Deviation from Wiedemann-Franz Law for the Thermal Conductivity of Liquid Tin and Lead at Elevated Temperature
International Journal of Thermophysics,Vol. 24[3](2003), p.713-730
H.Watanabe,M.Susa,H.Fukuyama,K.Nagata
Phase (Liquid/Solid) Dependence of the Normal Spectral Emissivity for Iron, Cobalt, and Nickel at Melting Points
International Journal of Thermophysics, Vol. 24[2](2003), p.473-488
H.Fukuyama,H.Tabata,K.Nagata
Determination of Gibbs Energy of Formation of Cuspidine (3CaOE2SiO2ECaF2) from EMF Method Using CaF2 as Solid Electrolyte
Metall. Mater. Trans. B, Vol.34B[3](2003), p.307-311
H.Watanabe,M.Susa,H.Fukuyama,K.Nagata
Phase (Liquid/Solid) and Wavelength Dependence of Spectral Emissivity for Cu, Ag, and Au at Melting Points in Near Infrared Region
International Journal of Thermophysics, Vol. 24[4](2003), p.1105-1120
H.Watanabe,M.Susa,H.Fukuyama,K.Nagata
Phase Dependence (Liquid/Solid) of Normal Spectral Emissivities of Noble Metals at Melting Points
‚hnternational Journal of Thermophysics,Vol.24[1](2003), p.223-237
K.Nagata,H.Fukuyama
Physicochemical Properties of CaO-SiO2-CaF2-NaF Slag System as a Mold Flux of Continuous Casting
steel reserach, Vol.74[1](2003), p.31-35
W.Nakao,H.Fukuyama,K.Nagata
Thermodynamic Stability of ƒÁ-Aluminum Oxynitride
J. Electrochem. Soc., Vol.150[2](2003), p.J1-J7

YR 2002


T.Watanabe,H.Fukuyama,K.Nagata
Stability of Cuspidine (3CaOE2SiO2ECaF2) and Phase Relations in the CaO-SiO2-CaF2 System
ISIJ International, Vol.42[5](2002), p.489-497
M.Hayashi,N.Nabeshima,H.Fukuyama,K.Nagata
Effect of Fluorine on Silicate Network for CaO-CaF2-SiO2 and CaO-CaF2-SiO2-FeOx Glasses
ISIJ International, Vol.42[4](2002), p.352-358
H.Fukuyama,Md.K.Hossain,K.Nagata
Solid-State Reaction Kinetics of the System CaO-FeO
Metall. Mater. Trans. B, Vol.33B[2](2002), p.257-264
M.Hayashi,M.Murata,H.Fukuyama,K.Nagata
Normal Spectral Emissivities of Liquid Ag-Cu Alloys in the Visible and Infrared Regions
Metall. Mater. Trans. B, Vol.33B[1](2002), p.47-54
W.Nakao,H.Fukuyama,K.Nagata
Gibbs Energy Change of Carbothermal Nitridation Reaction of Al2O3 to Form AlN and Reassessment of Thermochemical Properties of AlN
J. Am. Ceram. Soc., Vol.85[4](2002), p.889-896


YR 2001

K.Nagata,R.Kojimav,T.Murakami,M.Susa,H.Fukuyama
Mechanisms of Pig-iron Making from Magnetite Ore Pellets Containing Coal at Low Temperature
ISIJ International, Vol.41[11](2001), p.1316-1323
E.Yamasue,M.Susa,H.Fukuyama,K.Nagata
Thermal Conductivities of Silicon and Germanium in Solid and Liquid States Measured by Non-stationary Hot Wire Method with Silica Coated Probe
J. Crystal Growth, Vol.234/1(2001), p.121-131
T.Murakami,H.Fukuyama,K.Nagata
Mechanisms of Carburization and Melting of Iron by CO Gas
ISIJ International, Vol.41[5](2001), p.416-421
H.Fukuyama,A.P.Tchavdarov,K.Nagata
Nature of Copper Dissolved in Silica-Saturated Iron Silicate Slag Studied by X-ray Photoelectron Spectroscopy
Shigen-to-Sozai, Vol.117[4](2001), p.226-229
M.Hayashi,H.Ishii,M.Susa,H.Fukuyama,K.Nagata
Effect of Ionicity of Nonbridging Oxygen Ions on Thermal Conductivity of Molten Alkali Silicates
Phys. Chem. Glasses, Vol.42(2001), p.6-11


YR 2000

T.Watanabe,H.Fukuyama,M.Susa,K.Nagata
Phase Diagram Cuspidine (3CaO¥2SiO2¥CaF2) - CaF2
Metall. Mater. Trans. B, Vol.31B[6](2000), p.1273-1282
H.Fukuyama,J.Takasago,K.Kawagishi,M.Susa,K.Nagata
Simultaneous Determination of Activity Coefficient and Diffusion Coefficient of Boron in Single Crystalline Silicon
J. Electrochem. Soc., Vol.147[5](2000), p.1965-1969
M.Hayashi,M.Hori,M.Susa,H.Fukuyama,K.Nagata
Oxidation States and Coordination Structures of Iron Ions in Silicate Melts during Relaxation Process and at Equilibrium
Phys. Chem. Glasses, Vol.41(2000), p.49-54
T.Murakami,H.Fukuyama,T.Kishida,M.Susa,K.Nagata
Phase Diagram for the System CaO-Al2O3-ZrO2
Metall. Mater. Trans. B, Vol.31B[1](2000), p.25-33

YR 1999

H.Watanabe,M.Susa,H.Fukuyama,K.Nagata
Emissivities of Liquid and Solid Silicon at the Melting Point
High Temp. - High Press., Vol.31(1999), p.587-593
K.Matsumaru,H.Fukuyama,M.Susa,K.Nagata
Behaviour of Cavity Formation and Convection in FeOx-SiO2 Melts under Plasma Arc
ISIJ International, Vol.39[7](1999), p.651-658
T.Xiaojie,H.Fukuyama,M.Susa,K.Nagata
Non-linear Kinetic Analysis of Decarburization and Deoxidization of Liquid Iron by Ar-CO-CO2 Gas Mixtures
ISIJ International, Vol.39[4](1999), p.301-308
E.Yamasue,M.Susa,H.Fukuyama,K.Nagata
Nonstationary Hot Wire Method with Silica-Coated Probe for Measuring Thermal Conductivities of Molten Metals
Metall. Mater. Trans. A, Vol.30A[8](1999), p.1971-1979
G.R.F.Alvear,A.Tanaka,H.Fukuyama,T.Fujisawa,C.Yamauchi
Application of Na2CO3 Flux to the Removal of Impurity Elements from Molten Copper
Shigen-to-SozaiCVol.115[2](1999), p.89-96
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”Mƒvƒ‰ƒYƒ}—n‰ð‚µ‚½ƒVƒŠƒP[ƒgƒKƒ‰ƒX‚Ìö”­‹““®
“ú–{‹à‘®Šw‰ïŽCVol.63[1](1999), p.21-27
H.Fukuyama,W.Nakao,M.Susa,K.Nagata
New Synthetic Method of Forming Aluminum Oxynitride by Plasma Arc Melting
J.Am.Ceram.Soc., Vol.82[6](1999), p.1381-1387


YR 1998

T.Xiaojie,H.Fukuyama,M.Susa,K.Nagata
The Least Number of Chemical Reactions to Describe the Oxidation and the Carburization of Liquid Iron in Irreversible Processes
ISIJ International, Vol.38[11](1998), p.1185-1193
K.Matsumaru,H.Fukuyama,M.Susa,K.Nagata
Evaporation from Synthetic Incinerator Ashes Melted by Plasma Arc
Thin Solid Films, Vol.316(1998), p.105-110

YR 1997

H.Fukuyama,J.R.Donald,J.M.Toguri
Wetting Behavior between Fayalite-Type Slags and Solid Magnesia
J.Am.Ceram.Soc, Vol.80[9](1997), p.2229-2236


YR 1996

X.Huang,W.G.Ischak,H.Fukuyama,T.Fujisawa,C.Yamauchi
Activity Coefficient of Silicon in Molten Fe-C-B-Si Alloy
ISIJ International, Vol.36[9](1996), p.1151-1156


YR 1995

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N“üŒ^ƒ‚ƒfƒ‹‚É‚æ‚éFe-B-N‚ÆFe-C-BŒn‚ÌŠˆ—Ê
“S‚Æ|CVol.81[11](1995), p.1049-1054
G.R.Alvear,K.Suzuki,H.Fukuyama,T.Fujisawa,C.Yamauchi
Thermodynamic Considerations for Eliminating Ni and Zn from Molten Copper by Na2CO3-Base Slag
Materials Transactions, JIM, Vol.36[4](1995), p.524-532
H.Fukuyama,E.Wada,T.Fujisawa,C.Yamauchi
nteraction Parameter between Oxygen and Iron in Molten Copper and Distribution Ratio of Iron between NaO0.5-CO2-FeO1.5 Slag and Molten Copper
Materials Transactions, JIM, Vol.36[4](1995), p.518-523
G.R.Alvear,K.Mizuno,H.Fukuyama,T.Fujisawa,C.Yamauchi
Thermodynamic Considerations for Eliminating P and Si from Molten Copper by Na2CO3-Based Slag
Materials Transactions, JIM, Vol.36[1](1995), p.48-55


YR 1994

H.Fukuyama,E.Wada,T.Fujisawa,C.Yamauchi
Thermodynamic Properties of NaO0.5-CO2-FeO1.5 Slag
Materials Transactions, JIM, Vol.35[9](1994), p.603-610
G.R.Alvear,T.Kanai,H.Fukuyama,T.Fujisawa,C.Yamauchi
Thermodynamic Considerations for Elimination of Te and Se from Molten Copper by Using Na2CO3 Slag
Materials Transactions, JIM, Vol.35[8](1994), p.508-515
T.Fujisawa,H.Fukuyama,J.Shimotori,C.Yamauchi
Thermodynamics of NaO0.5-CO2-SnO2 Slag and Estimation of Distribution Ratio of Sn between the Slag and Molten Copper
Materials Transactions, JIM, Vol.35[6](1994), p.414-422
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—n“º’†‚ÌFe-Ž_‘fŠÔ‚Ì‘ŠŒÝì—pŒW”‚ÆNaO0.5-CO2-FeO1.5ŒnƒXƒ‰ƒO-—n“ºŠÔ‚ÌFe‚Ì•ª”z”ä
“ú–{‹à‘®Šw‰ïŽCVol.58[2](1994), p.176-181


YR 1993

H.Fukuyama,M.Tonsho,T.Fujisawa,C.Yamauchi
Activities in NaO0.5-CO2-AsO2.5 Slag and Estimation of Distribution Ratio of Arsenic between the Slag and Molten Copper
Metallurgical Review of MMIJ, Vol.10[2](1993),p.72-86
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NaO0.5-CO2-FeO1.5ŒnƒXƒ‰ƒO‚Ì”M—ÍŠw
“ú–{‹à‘®Šw‰ïŽCVol.57[10](1993), p.1149-1157
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NaO0.5-CO2-SnO2ŒnƒXƒ‰ƒO‚Ì”M—ÍŠw‚Æ–{ŒnƒXƒ‰ƒO-—n“ºŠÔ‚ÌSn‚Ì•ª”z”ä‚Ì„ŽZ
“ú–{‹à‘®Šw‰ïŽCVol.57[8](1993), p.905-913
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NaO0.5-CO2-AsO2.5ŒnƒXƒ‰ƒO‚ÌŠˆ—ʂƖ{ŒnƒXƒ‰ƒO-—n“ºŠÔ‚ÌAs‚Ì•ª”z”ä‚Ì„ŽZ
Ž‘Œ¹‚Æ‘fÞ Vol.109[8](1993), p.601-606
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NaO0.5-CO2-SbOmŒn—n—ZƒXƒ‰ƒO‚ÌŠˆ—ʂƖ{ŒnƒXƒ‰ƒO-—n“ºŠÔ‚ÌSb‚Ì•ª”z”ä‚Ì„ŽZ
“ú–{‹à‘®Šw‰ïŽCVol.57[5](1993), p.521-526



YR 1992


T.Fujisawa,H.Fukuyama,T.Kato,Y.Ikitsu,C.Yamauchi
Solubilities of CO2 and Redox Equilibria of Sb and As in NaO0.5-SbOm and NaO0.5-AsOm Melts
Materials Transactions, JIM, Vol.33[7](1992), p.683-690


YR 1991

•ŸŽR”Ž”V,‰Á“¡@“O,¶’ÈÀÍ,“¡àV•qŽ¡,ŽR“à–r•¶
Na2O-Sb2Om,Na2O-As2OmŒn —n—ZƒXƒ‰ƒO‚ÌCO2—n‰ð—Ê‚ÆSb‚ÆAs‚Ì•Š‘¶ó‘Ô
“ú–{‹à‘®Šw‰ïŽCVol.55[12](1991), p.1322-1330


YR 1989

“¡àV•qŽ¡,‹v–ì’‰º.•ŸŽR”Ž”V,‚ˆäÍŽ¡,ŽR“à–r•¶
Na2O-CO2-Sb2O2Œn—n—ZƒXƒ‰ƒO‚ÌŠˆ—Ê
“ú–{‹à‘®Šw‰ïŽCVol.53[5](1989), p.558-564
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“ú–{‹à‘®Šw‰ïŽCVol.53[4](1989), p.407-414
C.Yamauchi,T.Fujisawa,S.Goto,H.Fukuyama
Effect of Partial Pressure of CO2 on the Distribution Ratios of Sb and Cu between Na2CO3 Slag and Molten Copper at 1523K
Materials Transactions, JIM, Vol.30[3](1989), p.175-183