[1]Bolt P H, Batazzi D, Belfiore N P, et al. Damage resistance and roughness retention of work rolls in cold rolling mills[J]. Revue de Métallurgie, 2010, 107(6):245-255.
[2]Sun W H, Li H C, Tieu A K. A study on corrosion wear of cold rolling work roll[J]. Advanced Materials Research, 2014, 871:152-158.
[3]唐广银, 周才东, 张义静. 高耐磨锻钢冷轧工作辊[J]. 金属加工: 热加工, 2012, (15):42-44.
Tang G Y, Zhou C D, Zhang Y J. High wear resistance forged steel cold work roll[J]. MW Metal Forming, 2012,(15):42-44.
[4]王爽, 刘大琦. 锻造冷轧工作辊材料的发展[J]. 金属加工: 热加工, 2013, (5):70-72.
Wang S, Liu D Q. Development of forged work roll material[J]. MW Metal Forming, 2013, (5):70-72.
[5]尹钟大, 刘德富, 徐德祥, 等. 锻造半高速钢冷轧工作辊的试制[J]. 特殊钢, 2005, 26(4):40-41.
Yin Z D, Liu D F, Xu D X, et al. Pilot production of forged semi-high speed steel working roll for cold rolling[J]. Special Steel, 2005, 26(4):40-41
[6]徐咏梅. 锻造及热处理工艺对MC5冷轧辊坯缺陷与组织性能的影响[D]. 哈尔滨:哈尔滨工业大学, 2014.
Xu Y M. Effects of Forging and Heat Treatment Process of MC5 Cold Roll Blank Defects and Structure Property[D]. Harbin: Harbin Institute of Technology, 2014.
[7]马雪飞, 姜君, 李红雷. 基于动态材料模型的Cr8钢的热加工图[J]. 锻压技术, 2019, 44(1):166-170.
Ma X F, Jiang J, Li H L. Hot processing map of Cr8 steel based on dynamic material model [J]. Forging & Stamping Technology, 2019, 44(1):166-170.
[8]徐咏梅, 岳喜军, 刘英武. Cr6冷轧工作辊用钢的开发试制[J]. 特钢技术, 2009, 15(4):9-10.
Xu Y M, Yue X J, Liu Y W. Development and trial production of Cr6 steel for working roller in cold rolling process[J]. Special Steel Technology, 2009, 15(4): 9-10.
[9]郭婧. 新型冷轧工作辊用钢中碳化物研究及轧辊锻造数值模拟[D]. 秦皇岛:燕山大学, 2014.
Guo J. Carbide Investigation of a Novel Steel for Cold Work Roll and Roll-forging Simulation[D]. Qinhuangdao: Yanshan University, 2014.
[10]刘利刚, 李强, 郭婧, 等. 一种新型冷轧工作辊用高速钢的热变形行为[J]. 材料热处理学报, 2012, 33(8):89-95.
Liu L G, Li Q, Guo J, et al. Hot deformation behavior of a novel high speed steel for cold mill work roller[J]. Transactions of Materials and Heat Treatment, 2012, 33(8):89-95.
[11]Guo J, Liu L G, Li Q, et al. Characterization on carbide of a novel steel for cold work roll during solidification process[J]. Materials Characterization, 2013, 79:100-109.
[12]Guo J, Liao B, Liu L G, et al. Forging limit of a novel high-speed-steel cold work roll based on ductile fracture criteria by finite element model[J]. Materials and Design, 2013, 52:1027-1034.
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