参考文献
[1] | Nakada, H;Susa, M;Seko, Y;Hayashi, M;Nagata, K .Mechanism of heat transfer reduction by crystallization of mold flux for continuous casting[J].ISIJ International,2008(4):446-453. |
[2] | Guanghua WEN;Seetharaman SRIDHAR;Ping TANG .Development of Fluoride-free Mold Powders for Peritectic Steel Slab Casting[J].ISIJ International,2007(8):1117-1125. |
[3] | Mills K C;Fox A B;Thackray R P.The Performance and Properties of Mould Fluxes[A].Johnnesburg:Camera Press,2004:713. |
[4] | LONG Xiao,HE Sheng-ping,XU Jian-fei,HUO Xu-ling,WANG Qian.Properties of High Basicity Mold Fluxes for Peritectic Steel Slab Casting[J].钢铁研究学报:英文版,2012(07):39-45. |
[5] | Yamauchi A;Sorimachi K;Sakuraya T et al.Heat Transfer Between Mold and Slab Through Mold Flux Film in Continuous Casting of Steel (in Japanese)[J].Tetsu-to Hagané,1993,79(02):167. |
[6] | Ohmiya S;Tacke K H;Schwerdtfeger K .Heat Transfer Through Layers of Casting Fluxes[J].Ironmaking and Steelmaking,1983,10(01):24. |
[7] | Yamauchi A;Sorimachi K;Sakuraya T et al.Heat Transfer Between Mold and Strand Through Mold Flux Film in Continuous Casting of Steel[J].ISIJ International,1993,33(01):145. |
[8] | M.Kawamoto .Improvement of the Initial Stage of Solidification by Using Mild Cooling Mold Powder[J].ISIJ International,1997(2):134-139. |
[9] | ZHANQUAN HAO;WEIQING CHEN;CARSTEN LIPPOLD .Effect of Titania Absorption into a Mold Flux on the Heat Transfer Between the Mold and the Slab in the Continuous Casting of Titanium-Stabilized Stainless Steel[J].Metallurgical and Materials Transactions, B. Process metallurgy and materials processing science,2010(4):805-812. |
[10] | Jiang DIAO;Bing XIE;Nanhui WANG .Effect of Transition Metal Oxides on Radiative Heat Transfer through Mold Flux Film in Continuous Casting of Steel[J].ISIJ International,2007(9):1294-1299. |
[11] | J. Diao;B. Xie;J. P. Xiao .Experimental investigation into radiative heat transfer characteristics for mould fluxes containing transition oxides[J].Ironmaking & Steelmaking,2009(8):610-614. |
[12] | 王新月,金山同.不锈钢(304HC)浇铸过程保护渣成分变化及其对渣性能影响[J].钢铁,2006(11):20-22. |
[13] | Choi SY;Lee DH;Shin DW;Choi SY;Cho JW;Park JM .Properties of F-free glass system as a mold flux: viscosity, thermal conductivity and crystallization behavior[J].Journal of Non-Crystalline Solids: A Journal Devoted to Oxide, Halide, Chalcogenide and Metallic Glasses, Amorphous Semiconductors, Non-Crystalline Films, Glass-Ceramics and Glassy Composites,2004(0):157-160. |
[14] | Nagata K;Susa M;Goto K .Thermal Conductivities of Slags for Ironmaking and Steelmaking (in Japanese)[J].Tetsu To Hagane-Journal of the Iron & Steel Institute of Japan,1983,69(11):1418. |
[15] | ZHANG Hua;ZHAO Wen-zhu.Thermal Measurement In strument(in Chinese)[M].北京:冶金工业出版社,2006 |
[16] | Youngjo KANG;Kazuki MORITA .Thermal Conductivity of the CaO-Al_2O_3-SiO_2 System[J].ISIJ International,2006(3):420-426. |
[17] | XI Tong-geng.Thermal Physical Property Science of Inorganic Materials(in Chinese)[M].上海:上海科学技术出版社,1981 |
[18] | Department of Geological Rock Ore Teaching and Research;Peking University.Optical Mineralogy(in Chinese)[M].Beijing:Geolog ical Publishing Press,1979 |
[19] | Sumito OZAWA;Masahiro SUSA;Takashi GOTO;Rie (KOJIMA) ENDO;K. C. MILLS .Lattice and Radiation Conductivities for Mould Fluxes From the Perspective of Degree of Crystallinity[J].ISIJ International,2006(3):413-419. |
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