Investigation of Formation and Shedding Behavior of Slag Crust in a Large Blast Furnace with Copper Stave: Flow Properties and Crystallization Characteristics
暂无分享,去创建一个
K. Jiao | Ziyu Guo | Jianliang Zhang | Hengbao Ma | J. Zhang | Y. Zong | Cui Wang
[1] K. Jiao,et al. Phase Composition and Formation Mechanism of Slag Crust in Blast Furnace , 2020 .
[2] Q. Liao,et al. Deep insight into phase transition and crystallization of high temperature molten slag during cooling: A review , 2020 .
[3] K. Jiao,et al. Manufacturing technology and application of cooling stave in blast furnace , 2020 .
[4] Jianliang Zhang,et al. Status, technological progress, and development directions of the ironmaking industry in China , 2019 .
[5] K. Jiao,et al. Phase composition and properties analysis of slag crust in large-size blast furnace copper stave 大型高炉铜冷却壁渣皮物相组成及性能分析 , 2019 .
[6] Xue-Feng Zhang,et al. Effects of SiO2/CaO ratio on viscosity, structure, and mechanical properties of blast furnace slag glass ceramics , 2019, Materials Chemistry and Physics.
[7] I. Sohn,et al. A Review on Reclamation and Reutilization of Ironmaking and Steelmaking Slags , 2018, Journal of Sustainable Metallurgy.
[8] K. Jiao,et al. Damage mechanism of copper stave used in blast furnace , 2018 .
[9] B. Blanpain,et al. Effect of Crystallization on the Abrupt Viscosity Increase during the Slag Cooling Process , 2018, ISIJ International.
[10] Xuebin Wang,et al. Damage Mechanism of Copper Staves in a 3200 m3 Blast Furnace , 2018, Metals.
[11] Takao Terano,et al. Soft-sensing method for slag-crust state of blast furnace based on two-dimensional decision fusion , 2018, Neurocomputing.
[12] K. Jiao,et al. Effects of Pre‐Reduction Degree of Ironsand on Slag Properties in Melting Separation Process , 2018 .
[13] Miao‐yong Zhu,et al. Evolution of Compositions and Properties of CaO–SiO2 Based Mold Flux for Continuous Casting High Mn Steel , 2016 .
[14] F. Zhang. Design and Operation Control for Long Campaign Life of Blast Furnaces , 2013 .
[15] C. Bai,et al. Melting features and viscosity of SiO2-CaO-MgO-Al2O3-FeO nickel slag in laterite metallurgy , 2013 .
[16] D. Min,et al. A Review of the Relationship between Viscosity and the Structure of Calcium‐Silicate‐Based Slags in Ironmaking , 2012 .
[17] Tong Wu,et al. Model of Forming-Accretion on Blast Furnace Copper Stave and Industrial Application , 2012 .
[18] Ruey-Jen Yang,et al. Conjugate heat transfer analysis of copper staves and sensor bars in a blast furnace for various refractory lining thickness , 2012 .
[19] Hongbo Zhao,et al. Quantificational indexes for design and evaluation of copper staves for blast furnaces , 2008 .
[20] Z. Du,et al. Heat transfer analysis of blast furnace cast steel cooling stave , 2007 .
[21] Zhao Hong-bo,et al. Monitoring Method for Blast Furnace Wall With Copper Staves , 2007 .
[22] Hong-bo Zhao,et al. Monitoring Method for Blast Furnace Wall With Copper Staves , 2007 .
[23] Y. Meng,et al. Simulation of Microstructure and Behavior of Interfacial Mold Slag Layers in Continuous Casting of Steel , 2006 .
[24] Brian G. Thomas,et al. MOULD SLAG PROPERTY MEASUREMENTS TO CHARACTERIZE CC MOULD – SHELL GAP PHENOMENA , 2004 .
[25] J. Nowok. Viscosity and phase transformation in coal ash slags near and below the temperature of critical viscosity , 1994 .