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·398· 工程科学学报,第39卷,第3期 ity of copper staves based on ANSYS birth-death element technolo- (陈明样.弹塑性力学.北京:科学出版社,2007) .Chin J Eng,2016,38(4):546 [14]Shi L,Cheng SS,Zhang L J.Thermal distortion of blast fumace (李峰光,张建良.基于ANSYS“生死单元”技术的铜冷却壁 copper staves.Chin J Nonferrous Met,2005,15(12):2040 挂渣能力计算模型.工程科学学报,2016,38(4):546) (石琳,程素森,张利君.高炉铜冷却壁的热变形.中国有色 Ji X L,Liu Z X,Lii Q,et al.Analysis on slag skull on BF cop- 金属学报,2005,15(12):2040) per cooling stave for vanadium-bearing titaniferous magnetite smel- [15]Liu Z X.Coupled Thermo-mechanical Analysis about Blast Fur- ting.Iron Steel Vanadium Titanium,2012,33(1):55 nace Staves [Dissertation].Shenyang:Northeastern University, (计秀兰,刘增勋,吕庆,等.治炼钒钛磁铁矿高炉的铜冷却 2009 壁挂渣分析.钢铁钒钛,2012,33(1):55) (刘增勋.高炉冷却壁热力耦合分析[学位论文].沈阳:东 [10]Shi L,Guo Y M,Cao FJ.Research on creep deformation of cast 北大学,2009) copper staves.J Inner Mongolia Unin Sci Technol,2013,32 [16]Ma H B,Zhang H S.Conclusion from copper cooling stave ap- (1):42 plication for Shougang No.2 BF.Ironmaking,2008,27 (5):9 (石琳,郭永茂,曹福军.铸铜冷却壁蠕变变形研究.内蒙古 (马洪斌,张贺顺.首钢2号高炉铜冷却壁使用的体会.炼 科技大学学报,2013,32(1):42) 铁,2008,27(5):9) [11]Wei Y,Kong J Y,Jiang B X,et al.Numerical simulation and [17]Fan C Q,Wang F,Li Y S.The study of control measures on slag structural optimization of BF bosh cast copper cooling wall. crust fall off for No.3 blast furnace in Ansteel /2014 Annual Foundry Technol,2013,34(7)918 National fronmaking Technology and Academic Conference. (魏渊,孔建益,姜本熹,等.高炉炉腹区域铸铜冷却壁的数 Zhengzhou,2014:157 值模拟及结构优化.铸造技术,2013,34(7):918) (范崇强,王飞,李永胜.鞍钢3号高炉控制渣皮脱落措施 12]Deng K,Cheng HE,Wu LJ,et al.Influence of structural pa- 的研究/2014年全国炼铁生产技术会暨炼铁学术年会.郑 rameters on temperature field and thermal stress of BF cooling 州,2014:157) stave.J fron Steel Res,2006,18 (2):1 [18]Liao Y T,Bi LG,Yang J,et al.Production practice of applying (邓凯,程惠尔,吴俐俊,等.结构参数对高炉冷却壁温度场 thin-skinned lining for No.8 blast fumace in Liugang.Sci 及热应力分布的影响.钢铁研究学报,2006,18(2):1) Technol Liuzhou Steel,2009,37(1)12 [13]Chen M X.Elasticity and Plasticity.Beijing:Science Press, (愿玉通,闭立钢,杨剑,等.柳钢8号高炉应用薄壁炉衬生 2007 产实践.柳钢科技,2009,37(1):12)工程科学学报,第 39 卷,第 3 期 ity of copper staves based on ANSYS birth-death element technolo￾gy. Chin J Eng,2016,38( 4) : 546 ( 李峰光,张建良. 基于 ANSYS“生死单元”技术的铜冷却壁 挂渣能力计算模型. 工程科学学报,2016,38( 4) : 546) [9] Ji X L,Liu Z X,Lü Q,et al. Analysis on slag skull on BF cop￾per cooling stave for vanadium-bearing titaniferous magnetite smel￾ting. Iron Steel Vanadium Titanium,2012,33( 1) : 55 ( 计秀兰,刘增勋,吕庆,等. 冶炼钒钛磁铁矿高炉的铜冷却 壁挂渣分析. 钢铁钒钛,2012,33( 1) : 55) [10] Shi L,Guo Y M,Cao F J. Research on creep deformation of cast copper staves. J Inner Mongolia Univ Sci Technol,2013,32 ( 1) : 42 ( 石琳,郭永茂,曹福军. 铸铜冷却壁蠕变变形研究. 内蒙古 科技大学学报,2013,32( 1) : 42) [11] Wei Y,Kong J Y,Jiang B X,et al. Numerical simulation and structural optimization of BF bosh cast copper cooling wall. Foundry Technol,2013,34( 7) : 918 ( 魏渊,孔建益,姜本熹,等. 高炉炉腹区域铸铜冷却壁的数 值模拟及结构优化. 铸造技术,2013,34( 7) : 918) [12] Deng K,Cheng H E,Wu L J,et al. Influence of structural pa￾rameters on temperature field and thermal stress of BF cooling stave. J Iron Steel Res,2006,18( 2) : 1 ( 邓凯,程惠尔,吴俐俊,等. 结构参数对高炉冷却壁温度场 及热应力分布的影响. 钢铁研究学报,2006,18( 2) : 1) [13] Chen M X. Elasticity and Plasticity. Beijing: Science Press, 2007 ( 陈明祥. 弹塑性力学. 北京: 科学出版社,2007) [14] Shi L,Cheng S S,Zhang L J. Thermal distortion of blast furnace copper staves. Chin J Nonferrous Met,2005,15( 12) : 2040 ( 石琳,程素森,张利君. 高炉铜冷却壁的热变形. 中国有色 金属学报,2005,15( 12) : 2040) [15] Liu Z X. Coupled Thermo-mechanical Analysis about Blast Fur￾nace Staves [Dissertation]. Shenyang: Northeastern University, 2009 ( 刘增勋. 高炉冷却壁热力耦合分析[学位论文]. 沈阳: 东 北大学,2009) [16] Ma H B,Zhang H S. Conclusion from copper cooling stave ap￾plication for Shougang No. 2 BF. Ironmaking,2008,27( 5) : 9 ( 马洪斌,张贺顺. 首钢 2 号高炉铜冷却壁使用的体会. 炼 铁,2008,27( 5) : 9) [17] Fan C Q,Wang F,Li Y S. The study of control measures on slag crust fall off for No. 3 blast furnace in Ansteel / / 2014 Annual National Ironmaking Technology and Academic Conference. Zhengzhou,2014: 157 ( 范崇强,王飞,李永胜. 鞍钢 3 号高炉控制渣皮脱落措施 的研究 / / 2014 年全国炼铁生产技术会暨炼铁学术年会. 郑 州,2014: 157) [18] Liao Y T,Bi L G,Yang J,et al. Production practice of applying thin-skinned lining for No. 8 blast furnace in Liugang. Sci Technol Liuzhou Steel,2009,37( 1) : 12 ( 廖玉通,闭立钢,杨剑,等. 柳钢8 号高炉应用薄壁炉衬生 产实践. 柳钢科技,2009,37( 1) : 12) · 893 ·
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