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·936· 工程科学学报,第38卷,第7期 Barranco R.Patrick J,Snape C,et al.Impact of low-eost filler [15]Yamazaki Y,Hayashizaki H,Ueoka K,et al.The effect of vari- material on coke quality.Fuel,2007,86(14):2179 ation of the coke microstructure with addition of iron ore on the [10]Zhu S Z,Xia D G,Liu Q.Effect porosity on strength of porous tensile strength of ferrous coke.Tetsu-to-Hagane,2010,96(9): alumina.J Unir Sci Technol Beijing,1993,15(6):634 536 (朱时珍,夏定国,刘庆.多孔氧化铝陶瓷气孔率对强度的 [16]Igawa K,Kasaoka S,Ohshima H.Mathematical models for coke 影响.北京科技大学学报,1993,15(6):634) and by-product quality control.Tetsu-to-Hagane,1992,78(7): [11]YamamotoT,Hanaoka K,Sakamoto S,et al.Effect of coke pore 1093 structure on coke tensile strength before/after CO reaction and 07] Wang Z,Zhang J L,Zuo H B,et al.Gasification reaction char- surface-breakage strength.Tetsu-to-Hagane,2006,92(3):206 acteristics of stamp charging cokes at high temperature.J Univ [Li J X,Wang J J,Wang P,et al.Influence of H2O-CO2 gas Sci Technol Beijing,2014,36(12):1602 mixture on coke degradation.J Anhui Unir Technol,2008,25 (王喆,张建良,左海滨,等.捣固焦高温气化反应特性.北 (3):233 京科技大学学报,2014,36(12):1602) (李家新,汪涧江,王平,等.H0-C0,混合气体对焦炭劣 [18]Zhao L M,Song Y Z,Li Z Q.Study of the dynamic crushing be- 化反应的影响.安徽工业大学学报,2008,25(3):233) havior of cellular materials by using the voronoi random models.J [13]Zhao QQ,Xue QC,She X F,et al.Study on solution loss re- Mech Strength,2009,31(6):932 action kinetics of coke with H2O and CO.Chin Process Eng, (赵隆茂,宋延泽,李志强.基于Voronoi随机模型研究多孔 2012,12(5):789 材料的动态特性.机械强度,2009,31(6):932) (赵晴晴,薛庆国,佘雪峰,等.H20和CO2对焦炭溶损反 [19]Lu G D,Yan E C,Wang X M,et al.Study of impact of fractal 应动力学的研究.过程工程学报,2012,12(5):789) dimension of pore distribution on compressive strength of porous [14]Takatani K,Iwanaga Y.Rate analysis of gasification of metallur- material.Rock Soil Mech,2014,35(8)2261 gical coke with CO2 and H20.Tetsu-to-Hagane,1989,75(4): (鲁功达,晏鄂川,王雪明,等.孔隙分布分形维对多孔材料 594 抗压强度的影响研究.岩土力学,2014,35(8):2261)工程科学学报,第 38 卷,第 7 期 [9] Barranco R,Patrick J,Snape C,et al. Impact of low-cost filler material on coke quality. Fuel,2007,86( 14) : 2179 [10] Zhu S Z,Xia D G,Liu Q. Effect porosity on strength of porous alumina. J Univ Sci Technol Beijing,1993,15( 6) : 634 ( 朱时珍,夏定国,刘庆. 多孔氧化铝陶瓷气孔率对强度的 影响. 北京科技大学学报,1993,15( 6) : 634) [11] Yamamoto T,Hanaoka K,Sakamoto S,et al. Effect of coke pore structure on coke tensile strength before /after CO2 reaction and surface-breakage strength. Tetsu-to-Hagane,2006,92( 3) : 206 [12] Li J X,Wang J J,Wang P,et al. Influence of H2O--CO2 gas mixture on coke degradation. J Anhui Univ Technol,2008,25 ( 3) : 233 ( 李家新,汪涧江,王平,等. H2O--CO2 混合气体对焦炭劣 化反应的影响. 安徽工业大学学报,2008,25( 3) : 233) [13] Zhao Q Q,Xue Q G,She X F,et al. Study on solution loss re￾action kinetics of coke with H2O and CO2 . Chin J Process Eng, 2012,12( 5) : 789 ( 赵晴晴,薛庆国,佘雪峰,等. H2O 和 CO2 对焦炭溶损反 应动力学的研究. 过程工程学报,2012,12( 5) : 789) [14] Takatani K,Iwanaga Y. Rate analysis of gasification of metallur￾gical coke with CO2 and H2O. Tetsu-to-Hagane,1989,75( 4) : 594 [15] Yamazaki Y,Hayashizaki H,Ueoka K,et al. The effect of vari￾ation of the coke microstructure with addition of iron ore on the tensile strength of ferrous coke. Tetsu-to-Hagane,2010,96( 9) : 536 [16] Igawa K,Kasaoka S,Ohshima H. Mathematical models for coke and by-product quality control. Tetsu-to-Hagane,1992,78( 7) : 1093 [17] Wang Z,Zhang J L,Zuo H B,et al. Gasification reaction char￾acteristics of stamp charging cokes at high temperature. J Univ Sci Technol Beijing,2014,36( 12) : 1602 ( 王喆,张建良,左海滨,等. 捣固焦高温气化反应特性. 北 京科技大学学报,2014,36( 12) : 1602) [18] Zhao L M,Song Y Z,Li Z Q. Study of the dynamic crushing be￾havior of cellular materials by using the voronoi random models. J Mech Strength,2009,31( 6) : 932 ( 赵隆茂,宋延泽,李志强. 基于 Voronoi 随机模型研究多孔 材料的动态特性. 机械强度,2009,31( 6) : 932) [19] Lu G D,Yan E C,Wang X M,et al. Study of impact of fractal dimension of pore distribution on compressive strength of porous material. Rock Soil Mech,2014,35( 8) : 2261 ( 鲁功达,晏鄂川,王雪明,等. 孔隙分布分形维对多孔材料 抗压强度的影响研究. 岩土力学,2014,35( 8) : 2261) · 639 ·
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