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文光华等:连铸结晶器内渣膜形成及传热的研究现状 ·21· casting of steel:Part I conventional mould powders.IS//Int, ous casting of steel.ISI/Int,2007,47(9):1294 2016,56(1):1 [30]Diao J,Xie B,Xiao J P,et al.Radiative heat transfer in transi- [21]Lee D W,Kingery W D.Radiation energy transfer and thermal tion metal oxides contained in mold fluxes./S//Int,2009,49 conductivity of ceramic oxides.J Am Ceram Soc,1960,43 (11):1710 (11):594 [31]Diao J,Xie B.Research on reducing mold flux's radiative heat [22]Anderson S P,Eggertson C.Thermal conductivity of powders transfer based on FTIR and XRD.Spectrosc Spect Anal,2009.29 used in continuous casting of steel.fronmak Steelmak,2015.42 (2):336 (6):456 (刁江,谢兵.基于TR和XRD的降低连铸保护渣红外辐射 [23]Susa M,Watanabe M,Ozawa S,et al.Thermal conductivity of 传热研究.光谱学与光谱分析,2009,29(2):336) CaO-Si02-Al O;glassy slags:its dependence on molar ratios of [32]Susa M,Kushimoto A.Toyota H,et al.Effects of both crystalli- Al2O3/CaO and Si02/Al2O3.Ironmak Steelmak,2007,34 zation and iron oxides on the radiative heat transfer in mould flu (2):124 xcs.1SJmt,2009,49(11):1722 [24]Ozawa S,Susa M.Effect of Na2O additions on thermal conduc- [33]Susa M,Kushimoto A,Endo R,et al.Controllability of radiative tivities of Ca0-Si0,slags.Ironmak Steelmak,2005,32(6): heat flux across mould flux films by cuspidine grain size.IS// 487 1m,2011,51(10):1587 [25]Hayashi M,Abas R A,Seetharaman S.Effect of crystallinity on [34]Bucholtz A.Rayleigh-scattering calculations for the terrestrial at- thermal diffusivities of mould fluxes for the continuous casting of mosphere.Appl Opt,1995,34(15):2765 steels.IS//Int,2004,44(4):691 [35]Yoon D W,Cho J W,Kim S H.Scattering effect of iron metallie [26]Waseda Y,Masuda M,Watanabe K,et al.Thermal diffusivitites particles on the extinction coefficient of Cao-Si02-B203- of continuous casting powders for steel at high temperature.High Na2O-Fe2O3-CaF2 glasses.Metall Mater Trans B.2016,47 Temp Mater Processes,1994,13(4):267 (5):2785 [27]Wang W L,Cramb A W.The observation of mold flux crystalli- [36]Yang C L,Wen G H,Zhu X F,et al.In situ observation and zation on radiative heat transfer.IS/J Int,2005,45(12):1864 numerical simulation of bubble behavior in CaO-Si0,based slag [28]Cho J,Shibata H,Emi T,et al.Radiative heat transfer through during isothermal and nonisothermal processes.Non-Cryst Sol- mold flux film during initial solidification in continuous casting of ik,2017,464:56 steel.S0lnt,1998,38(3):268 [37]Rousseau B,Meneses D DS,Echegut P,et al.Textural param- [29]Diao J,Xie B,Wang N H,et al.Effect of transition metal ox- eters influencing the radiative properties of a semitransparent por- ides on radiative heat transfer through mold flux film in continu- ous media.Int J Therm Sci,2011,50(2):178文光华等: 连铸结晶器内渣膜形成及传热的研究现状 casting of steel: Part 1 conventional mould powders. ISIJ Int, 2016, 56(1): 1 [21] Lee D W, Kingery W D. Radiation energy transfer and thermal conductivity of ceramic oxides. J Am Ceram Soc, 1960, 43 (11): 594 [22] Anderson S P, Eggertson C. Thermal conductivity of powders used in continuous casting of steel. Ironmak Steelmak, 2015, 42 (6): 456 [23] Susa M, Watanabe M, Ozawa S, et al. Thermal conductivity of CaO鄄鄄 SiO2 鄄鄄Al2O3 glassy slags: its dependence on molar ratios of Al2O3 / CaO and SiO2 / Al2O3 . Ironmak Steelmak, 2007, 34 (2): 124 [24] Ozawa S, Susa M. Effect of Na2O additions on thermal conduc鄄 tivities of CaO鄄鄄 SiO2 slags. Ironmak Steelmak, 2005, 32 (6 ): 487 [25] Hayashi M, Abas R A, Seetharaman S. Effect of crystallinity on thermal diffusivities of mould fluxes for the continuous casting of steels. ISIJ Int, 2004, 44(4): 691 [26] Waseda Y, Masuda M, Watanabe K, et al. Thermal diffusivitites of continuous casting powders for steel at high temperature. High Temp Mater Processes, 1994, 13(4): 267 [27] Wang W L, Cramb A W. The observation of mold flux crystalli鄄 zation on radiative heat transfer. ISIJ Int, 2005, 45(12): 1864 [28] Cho J, Shibata H, Emi T, et al. Radiative heat transfer through mold flux film during initial solidification in continuous casting of steel. ISIJ Int, 1998, 38(3): 268 [29] Diao J, Xie B, Wang N H, et al. Effect of transition metal ox鄄 ides on radiative heat transfer through mold flux film in continu鄄 ous casting of steel. ISIJ Int, 2007, 47(9): 1294 [30] Diao J, Xie B, Xiao J P, et al. Radiative heat transfer in transi鄄 tion metal oxides contained in mold fluxes. ISIJ Int, 2009, 49 (11): 1710 [31] Diao J, Xie B. Research on reducing mold flux爷 s radiative heat transfer based on FTIR and XRD. Spectrosc Spect Anal, 2009, 29 (2): 336 (刁江,谢兵. 基于 FTIR 和 XRD 的降低连铸保护渣红外辐射 传热研究. 光谱学与光谱分析, 2009, 29(2): 336) [32] Susa M, Kushimoto A, Toyota H, et al. Effects of both crystalli鄄 zation and iron oxides on the radiative heat transfer in mould flu鄄 xes. ISIJ Int, 2009, 49(11): 1722 [33] Susa M, Kushimoto A, Endo R, et al. Controllability of radiative heat flux across mould flux films by cuspidine grain size. ISIJ Int, 2011, 51(10): 1587 [34] Bucholtz A. Rayleigh鄄scattering calculations for the terrestrial at鄄 mosphere. Appl Opt, 1995, 34(15): 2765 [35] Yoon D W, Cho J W, Kim S H. Scattering effect of iron metallic particles on the extinction coefficient of CaO鄄鄄 SiO2 鄄鄄 B2O3 鄄鄄 Na2O鄄鄄Fe2O3 鄄鄄 CaF2 glasses. Metall Mater Trans B, 2016, 47 (5): 2785 [36] Yang C L, Wen G H, Zhu X F, et al. In situ observation and numerical simulation of bubble behavior in CaO鄄鄄 SiO2 based slag during isothermal and nonisothermal processes. J Non鄄Cryst Sol鄄 ids, 2017, 464: 56 [37] Rousseau B, Meneses D D S, Echegut P, et al. Textural param鄄 eters influencing the radiative properties of a semitransparent por鄄 ous media. Int J Therm Sci, 2011, 50(2): 178 ·21·
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