[1]WANG Weiling, ZHU Miaoyong, CAI Zhaozhen, et al. Micro-segregation Behavior of Solute Elements in the Mushy Zone of Continuous Casting Wide-thick Slab[J]. Steel Research International, 2012,83(12):1152-1162.
[2]曹志强, 陈飞, 李孝建, 等.工艺参数对Zn-4.5Cu-0.2Mn-0.3Bi合金水平连铸坯反偏析及凝固组织的影响[J].稀有金属材料与工程, 2015,44(10):2571-2575.
CAO Zhiqiang, CHEN Fei, LI Xiaojian,et al. Effect of Process Parameters on Reverse Segregation and Solidification Structure of Zn-4.5Cu-0.2Mn-0.3Bi Alloy Horizontal Continuous Casting Slab[J]. Rare Metal Materials and Engineering, 2015, 44(10):2571-2575.
[3]陈卫强, 许中波, 蔡开科, 等. 连铸65钢方坯的质量[J]. 北京科技大学学报, 1998, 20(2):103-107.
CHEN Weiqiang, XU Zhongbo, CAI Kaike,et al. Quality of Continuous Casting 65 Steel Billet[J]. Journal of University of Science and Technology Beijing, 1998, 20(2):103-107.
[4]兰鹏, 杜辰伟, 陈培莉, 等. 微合金钢连铸表面横裂纹形成机理与控制技术研究现状[J]. 钢铁研究学报, 2017,29(1):1-12.
LAN Peng, DU Chenwei, CHEN Peili,et al. Research Status of Surface Transverse Crack Formation Mechanism and Control Technology in Continuous Casting of Microalloyed Steel[J]. Journal of Iron and Steel Research, 2017,29(1):1-12.
[5]孙彦辉, 徐蕊, 曾亚南, 等. 低碳高锰钢大方坯表面裂纹原因分析[J]. 北京科技大学学报, 2014,36(S1):89-92.
SUN Yanhui, XU Rui, ZENG Yanan,et al. Cause Analysis of Surface Crack of Low Carbon High Manganese Steel Bloom[J]. Chinese Journal of Engineering, 2014,36(S1):89-92.
[6]KONG Yiwen, CHEN Dengfu, LIU Qiang, et al. A Prediction Model for Internal Cracks during Slab Continuous Casting[J]. Metals, 2019,9(5):587.
[7]窦坤, 卿家胜, 王雷, 等. 基于微观偏析模型的连铸方坯内裂纹敏感性研究[J]. 金属学报, 2014,50(12):1505-1512.
DOU Kun, QING Jiasheng, WANG Lei,et al. Study on Internal Crack Sensitivity of Continuous Casting Billet Based on Microsegregation Model[J]. Acta Metallurgica Sinica, 2014,50(12):1505-1512.
[8]樊精彪, 李峰, 王玉昌. 连铸大方坯动态轻压下冶金效果分析[J]. 世界钢铁, 2009,9(1):9-12.
FAN Jingbiao, LI Feng, WANG Yuchang. Metallurgical Effect Analysis of Continuous Casting Bloom Dynamic Soft Reduction[J]. World Iron & Steel, 2009,9(1):9-12.
[9]LUO Sen, ZHU Miaoyong, JI Cheng. Theoretical Model for Determining Optimum Soft Reduction Zone of Continuous Casting Steel[J]. Ironmaking & Steelmaking, 2014,41(3):233-240.
[10]史学亮, 任廷志, 秦旭. 非稳态浇注压下区间变化规律的研究与应用[J]. 中国机械工程, 2013,24(21):2960-2966.
SHI Xueliang, REN Tingzhi, QIN Xu. Research and Application of Variation Law of Reduction Interval in Unsteady Pouring[J]. China Mechanical Engineering, 2013,24(21):2960-2966.
[11]李茂印, 杨树峰, 李京社, 等. 轻压下调整对模具钢宽厚板坯中心质量的优化[J]. 钢铁, 2017,52(12):36-41.
LI Maoyin, YANG Shufeng, LI Jingshe,et al. Optimization of Center Mass of Wide and Thick Die Steel Slab by Soft Reduction Adjustment[J]. Iron and Steel, 2017,52(12):36-41.
[12]SUZUKI K, TAKAHASHI K, NISHI T, et al. Mechanical Properties of the Slabbing Mill Roll Materials at Room and Elevated Temperatures[J].Tetsu-to-Hagane, 1976,16(2):106-114.
[13]TAKAHASHI T. Solidification and Segregation of Steel Ingot[J]. Iron and Steel, 1982,17(3):57-61.
[14]SHIGEAKI O, MASAYUKI K, MAMORU Y, et al. Influence of Soft Reduction with One-piece Rolls on Center Segregation in Continuously East Slabs[J]. ISIJ International, 1991,31(12):1400-1407.
[15]MARKUS J, 武金波. 板坯连铸机动态软压下的最新成果[J]. 世界钢铁, 2001,1(6):57-61.
MARKUS J, WU Jinbo. Latest Achievements of Slab Caster under Dynamic Soft Reduction[J]. World Iron & Steel, 2001,1(6):57-61.
[16]罗森, 祭程, 朱苗勇, 等. 连铸坯凝固末端轻压下压下区间研究与实践[C]∥第七届中国钢铁年会.北京, 2009:1503-1508.
LUO Sen, JI Cheng, ZHU Miaoyong, et al. Research and Practice of Soft Reduction Interval at Solidification End of Continuous Casting Slab[C]∥Proceedings of the 7th China Iron and Steel Annual Meeting. Beijing, 2009:1503-1508.
[17]WANG Wenjun, HU Xionggang, NING Linxin, et al. Improvement of Center Segregation in High-carbon Steel Billets Using Soft Reduction[J]. Journal of University of Science and Technology Beijing, 2006,13(6):490-496.
[18]汪洪峰, 宋景欣, 邹俊苏. 连铸板坯中心裂纹的形成与控制[J]. 连铸, 2003,20(增刊1):36-38.
WANG Hongfeng, SONG Jingxin, ZOU Junsu. Formation and Control of Central Crack in Continuous Casting Slab[J]. Continuous Casting, 2003,20(Z1):36-38.
[19]ZEZE M, MISUMI H, NAGATA S, et al. Segregation Behavior and Deformation Behavior during Soft-reduction of Unsolidified Steel Ingot[J]. Tetsu-to-Hagane, 2001,87(2):71-76.
[20]廖永松. 轻压下技术在高碳钢方坯连铸中的应用[J]. 炼钢, 2002,18(5):35-39.
LIAO Yongsong. Application of Soft Reduction Technology in High Carbon Steel Billet Continuous Casting[J]. Steelmaking, 2002,18(5):35-39.
[21]罗传清, 陈国威, 刘光明. 动态轻压下技术在板坯连铸上的应用[C]∥第四届发展中国家连铸国际会议. 北京, 2008:140-144.
LUO Chuanqing, CHEN Guowei, LIU Guangming. Application of Dynamic Soft Reduction Technology in Slab Continuous Casting[C]∥Proceedings of the 4th International Conference on Continuous Casting in Developing Countries. Beijing, 2008:140-144.
[22]王少伟, 陈艳, 李岢, 等. 中碳钢连铸板坯动态轻压下的数值模拟[J]. 热加工工艺, 2021,50(3):95-99.
WANG Shaowei, CHEN Yan, LI Ke, et al. Numerical Simulation of Dynamic Soft Reduction of Medium Carbon Steel Continuous Casting Slab[J]. Hot Working Technology, 2021,50(3):95-99.
[23]ZHAO Junpu, LIU Liu, WANG Weiwei, et al. Effects of Heavy Reduction Technology on Internal Quality of Continuous Casting Bloom[J]. Ironmaking & Steelmaking, 2019,46(3):227-234.
[24]LIU Ke, SUN Qisong, ZHANG Jiaquan, et al. A Study on Quantitative Evaluation of Soft Reduction Amount for CC Bloom by Thermo-mechanical FEM Model[J]. Metallurgical Research and Technology, 2016, 113(5):504.
[25]刘珂, 孙齐松, 王立峰, 等. 不同厚度连铸板坯的合理总轻压下量[J]. 钢铁研究学报, 2017,29(2):111-116.
LIU Ke, SUN Qisong, WANG Lifeng, et al. Reasonable Total Soft Reduction of Continuous Casting Slab with Different Thickness[J]. Journal of Iron and Steel Research, 2017,29(2):111-116.
[26]ZONG Nanfu, ZHANG Hui, LIU Yang, et al. Analysis on Morphology and Stress Concentration in Continuous Casting Bloom to Learn the Formation and Propagation of Internal Cracks Induced by Soft Reduction Technology[J]. Ironmaking & Steelmaking, 2019, 46(9):872-885.
[27]罗仁辉, 徐李军, 黄华. 液芯压下过程中压下量分配对铸坯变形的影响[J]. 中国冶金, 2016,26(12):9-13.
LUO Renhui, XU Lijun, HUANG Hua. Effect of Reduction Distribution on Slab Deformation during Liquid Core Reduction[J]. China Metallurgy, 2016,26(12):9-13.
[28]陈俊儒, 张慧, 王明林, 等. 倒角大方坯连铸过程的温度场模拟分析[J]. 特种铸造及有色合金, 2019,39(10):1109-1113.
CHEN Junru, ZHANG Hui, WANG Minglin, et al. Simulation Analysis of Temperature Field in Continuous Casting Process of Chamfered Bloom[J]. Special-cast and Non-ferrous Alloys, 2019, 39(10):1109-1113.
[29]江中块, 蔡兆镇, 牛振宇, 等. 1650板坯压下过程热/力学行为及压下工艺优化[J]. 中国冶金, 2017,27(7):22-28.
JIANG Zhongkuai, CAI Zhaozhen, NIU Zhenyu, et al. Thermal / Mechanical Behavior and Reduction Process Optimization of 1650 Slab during Reduction[J]. China Metallurgy, 2017,27(7):22-28.
[30]闫小林. 连铸过程原理及数值模拟[M]. 石家庄:河北科学技术出版社, 2001:160-165.
YAN Xiaolin.Principle and Numerical Simulation of Continuous Casting Process[M]. Shijiazhuang:Hebei Science & Technology Press, 2001:160-165.
[31]王博, 张炯明, 肖超, 等. 连铸板坯轻压下过程中间裂纹产生机理[J].工程科学学报, 2016,38(3):351-356.
WANG Bo, ZHANG Jiongming, XIAO Chao, et al. Mechanism of Intermediate Cracks during Soft Reduction of Continuous Casting Slab[J]. Chinese Journal of Engineering, 2016,38(3):351-356.
[32]韩志强, 袁伟霞, 韩传基, 等. 连铸坯内裂纹形成的临界应变[J]. 连铸, 1999(5):22-24.
HAN Zhiqiang, YUAN Weixia, HAN Chuanji, et al. Critical Strain of Crack Formation in Continuous Casting Slab[J]. Continuous Casting, 1999(5):22-24.
[33]CLYNE T W, KURZ W. Solute Redistribution during Solidification with Rapid Solid State Diffusion[J]. Metallurgical Transactions A, 1981,12(6):965-971.
[34]WON Y M, YEO T J, SEOL D J, et al. A New Criterion for Internal Crack Formation in Continuously Cast Steels[J]. Metallurgical and Materials Transactions B, 2000, 31(4):779-794.
|