近年来,中国高炉结构向薄壁发展。薄壁高炉的优点是能够在一代炉役内在固定的内型下生产,因此寻找与薄壁相适应的合理内型成为薄壁高炉成败的决定性因素之一。通过厚壁高炉内型的合理化过程,以及总结已投产薄壁高炉内型的实绩,分析研究了薄壁高炉内型各参数的关系,提出薄壁高炉内型设计方法,并推荐相应炉容的薄壁高炉内型的尺寸。
Recent years, the thin-walled blast furnace has undergone considerable development because of its great advantage in maintaining stable operations of blast furnace during single a campaign life. Therefore, a reasonable profile would be one of decisive factors in the design of thin-walled blast furnace. Through discussing the process of rationalization of thick-walled blast furnace, and then based on the empirical analyses on production data of some thin wailed blast furnace, the relationship among various parameters on thin-walled profile were investigated. As a result, some feasible design methods of thin-walled blast furnace with their relevant profile parameters will be pro posed.
参考文献
[1] | 王至刚;项钟庸.小高炉炉型问题的探讨[J].钢铁,1959(02):33. |
[2] | 李清珍.高炉结构的若干问题[A].北京:冶金工业出版社,1998 |
[3] | 鞍钢炼铁厂;鞍钢中心试验室.高炉强化与内型的关系[A].北京:冶金工业出版社,1998 |
[4] | 张寿荣;于仲洁.武钢高炉长寿技术[M].北京:冶金工业出版社,2009 |
[5] | 项钟庸.高炉炉身内衬损坏部分修复技术的发展[J].钢铁技术,1992(02):20. |
[6] | Орешкин Г г.Рационльный,Профиль Доменных Печей[J].Сталъ,1951(04):22. |
[7] | 项钟庸;文学铭 .延长宝钢1号高炉的寿命[J].钢铁,1994,29(01):1. |
[8] | 文学铭.炼铁[M].北京:兵器工业出版社,2002 |
[9] | 江崎瀚;阿部幸弘;岩月钢治.名古屋第1高炉,(2次)の吹卸し[J].铁と钢(日本),1981(S):50. |
[10] | 神原健二郎;荻原友郎;重见彰利.高炉解体调查炉内状況[J].織と鋼,1976(05):535. |
[11] | KleinCA;FujiharaFK;FariaJ A.CST No l Blast Furnace the Challenge of the 25-Year Campaign[A].Nashville,TN,USA:America Iron and Steel Society,2002:87. |
[12] | 项钟庸.鞍钢高炉冷却结构的研讨[J].钢铁,1959(09):357. |
[13] | 朱仁良;朱锦明;李军.我国高炉大型化发展与探讨[A].北京:中国金属学会,2010 |
[14] | 项钟庸 .宝钢2号高炉的建设及新高炉的设计[J].钢铁,1993,28(03):1. |
[15] | 项钟庸 .长寿大型高炉设计[J].钢铁,1992,27(01):7. |
[16] | 林成城,项钟庸.宝钢高炉炉型特点及其对操作的影响[J].宝钢技术,2009(02):49-53. |
[17] | 张寿荣,银汉.高炉冶炼强化的评价方法[J].炼铁,2002(02):1-6. |
[18] | 银汉 .试论高炉改造与扩建的模式[J].炼铁,1994,13(02):1. |
[19] | 吴启常,魏丽.薄壁高炉内型设计[J].炼铁,2011(02):6-9. |
[20] | 中野薫;山冈秀行 .高炉のレースウェイ近傍物流状态に关する力学解析[J].織と鋼,2006,92(12):939. |
[21] | 田村健二;一回守政;肋元博文 等.高炉レースウェイ近傍の粉コークスの堆积举动からみた适正羽口风速[J].織と鋼,1987,73(15):1980. |
[22] | 研野雄二;析冈正毅;梅津善徳.君津3高炉における制铁技术の进步[J].製鉄研究,1982(310):237. |
[23] | 周传典.高炉炼铁生产技术手册[M].北京:冶金工业出版社,2002 |
[24] | 《炼铁设计参考资料》编写组.炼铁设计参考资料[M].北京:冶金工业出版社,1975 |
[25] | 徐小辉,项钟庸,邹忠平,罗云文.高炉下部区域气液平衡实证研究[J].钢铁,2011(08):17-21. |
[26] | 麦克马斯特大学;北京钢铁学院炼铁教研室.高炉炼铁技术讲座[M].北京:冶金工业出版社,1980 |
[27] | Carpenter J A;Berdusco D C.Blast Furnace Design[A].North Carolina,USA:America Iron and Steel Society,2001 |
[28] | 朱仁良;项钟庸;欧阳标 .宝钢3号高炉操作内型的形成及维护[J].中国冶金,2012,22(03):23. |
[29] | Inada T;Kasai A;Nakand K et al.Dissection Investigation of BF Hearth-Kokura No.2 BF(2^nd Campaign)[J].ISIJ International,2009,49(04):470. |
[30] | Inada T;Takatani K;Takata K et al.The Effect of Change of Furnace Profile With the Increase in Furnace Volume on Operation[J].ISIJ International,2003,43(08):1143. |
[31] | 林成城,项钟庸.宝钢高炉炉身设计结构差异对煤气流分布影响[J].宝钢技术,2009(04):53-56,62. |
[32] | 吴启常;魏丽.薄壁高炉内型设计[A].郑州:中国金属学会炼铁分会,2010 |
- 下载量()
- 访问量()
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%