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内蒙古自治区呼和浩特市赛罕区大学西街235号 邮编: 010021
作者机构:Hunan Univ Sci & Technol Sch Mat Sci & Engn Xiangtan 411201 Peoples R China Univ Teesside Sch Sci Engn & Design Middlesbrough Cleveland England Shandong Univ Sci & Technol Sch Mat Sci & Engn Qingdao 266590 Peoples R China Northeastern Univ Sch Mat Sci & Engn Shenyang 110819 Liaoning Peoples R China
出 版 物:《VACUUM》 (真空)
年 卷 期:2019年第159卷
页 面:447-455页
核心收录:
学科分类:08[工学] 0805[工学-材料科学与工程(可授工学、理学学位)] 0702[理学-物理学]
基 金:National Natural Science Foundation of China [51704112, 51474062] Natural Science Foundation of Hunan Province [2018JJ3181]
主 题:Deformation behavior Low density steel 3D Processing map Fe-Mn-Al-C
摘 要:The effect of Al content on the hot deformation behavior of high-Mn low density Fe-Mn-Al-C steels was investigated by the 3D processing map at the temperatures of 850-1050 degrees C and the strain rates of 0.001-10s(-1). The high-Al steel showed a higher flow stress and a greater activation energy (443 kJ/mol) in contrast to the low Al steel (394 kJ/mol). The microstructures of 8Al steel and 10Al steel depends on the deformation parameters. The initial hot rolling microstructure has been displaced by the recrystallized structure and substructures for both steels, while the unstable zone has deformation bands and flow localization. As the Z content increases with increasing Al content, this leads to a significant inhibition of the DRX process, resulting in an unstable domain with deformation zones and flow localization. For high-Al steel, the morphology and distribution of ferrite transform from the continuous band ferrite to discontinuous granular ferrite, moreover, the flow localization features cannot be observed with the decrease of strain rate to 0.001s(-1). Furthermore, the proportion of instability region for each of the strains increases with the increasing of the Al content, the high Al content weakens the workability of the Fe-Mn-Al-C steels.