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Environmental-friendly Ramming Materials for Mud Package and Taphole of Large-scaled Blast Furnaces

Environmental-friendly Ramming Materials for Mud Package and Taphole of Large-scaled Blast Furnaces
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摘要 The compositions, structures and properties of envi- ronmental-friendly ramming materials for mud package and taphole of large-scaled blast furnaces were studied. The results show that the formation of silica fibers makes structure of ramming materials dense. During the process of extruding mud and ramming materials, SiC is partly oxidized ; CaO , F% 03 and carbon penetrate towards the outer wall. The improvement of ramming materials can inhibit the penetration of molten slag, iron and carbon. The bulk density of environmental-friendly ramming ma- terials dried at 200 ℃ is 2.90 g · cm-3, the cold com- pressive strength of this kind of ramming materials dried at 200 ℃ is about 17. 0 MPa and fired at I 450 ℃ is about 39. 2 MPa. The compositions, structures and properties of envi- ronmental-friendly ramming materials for mud package and taphole of large-scaled blast furnaces were studied. The results show that the formation of silica fibers makes structure of ramming materials dense. During the process of extruding mud and ramming materials, SiC is partly oxidized ; CaO , F% 03 and carbon penetrate towards the outer wall. The improvement of ramming materials can inhibit the penetration of molten slag, iron and carbon. The bulk density of environmental-friendly ramming ma- terials dried at 200 ℃ is 2.90 g · cm-3, the cold com- pressive strength of this kind of ramming materials dried at 200 ℃ is about 17. 0 MPa and fired at I 450 ℃ is about 39. 2 MPa.
出处 《China's Refractories》 CAS 2013年第4期5-8,共4页 中国耐火材料(英文版)
关键词 blast furnace mud package TAPHOLE ramming material environmental-friendly blast furnace mud package taphole ramming material environmental-friendly
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参考文献4

  • 1Tsuchiya N, Fukutake T, Yamauchi Y, et al. In-furnace conditions as prerequisites for proper use and design of mud to control blast furnace taphole length[ J]. ISIJ In- ternational, 1998, 38(2) :116 - 125.
  • 2Yamashita M, Kashiwada M, Shibuta H,et al. Improve- ment of tapholes at Wakayama No. 5 blast furnace [ C ]. Proceedings of the 54h Ironmaking Conference, US, 1995 : 177 - 182.
  • 3Cameron B, John A, Owen S, et al. The Number 2 blast furnace casthouse at Dofasco[ C ]. 2007 Iron & Steel Technology Conference, US,2007 : 151 - 161.
  • 4Chen Xilai. Studies on the preparation and properties of super micro-porous and high thermal conductive carbon blocks for blast furnaces [ D ]. Wuhan : Wuhan University of Science and Technology, 2010.

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