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Processing Maps for Use in Hot Working of Ductile Iron 被引量:2

Processing Maps for Use in Hot Working of Ductile Iron
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摘要 The hot deformation characteristics of ductile iron are studied in the temperature range of 973 to 1273K and strain rate range of 0.001 to 1 s-1 by using hot compression tests.Processing maps for hot working are developed on the basis of the variations of efficiency of power dissipation with temperature and strain rate.The results reveal that the flow stress of ductile iron is sensitive to strain rate.In the processing map under strain of 0.7,a domain is centered at 1273 K and 1 s-1,and the maximum efficiency is more than 36%.According to the maps,the zone with the temperature range of 1173 to 1273 K and strain rate range of 0.1 to 1 s-1 may be considered as the optimum region for hot working. The hot deformation characteristics of ductile iron are studied in the temperature range of 973 to 1273K and strain rate range of 0.001 to 1 s-1 by using hot compression tests.Processing maps for hot working are developed on the basis of the variations of efficiency of power dissipation with temperature and strain rate.The results reveal that the flow stress of ductile iron is sensitive to strain rate.In the processing map under strain of 0.7,a domain is centered at 1273 K and 1 s-1,and the maximum efficiency is more than 36%.According to the maps,the zone with the temperature range of 1173 to 1273 K and strain rate range of 0.1 to 1 s-1 may be considered as the optimum region for hot working.
出处 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2011年第4期48-51,72,共5页 钢铁研究学报(英文版)
基金 Item Sponsored by National Natural Science Foundation of China and Baosteel(50271061,50371074)
关键词 ductile iron processing map hot working ductile iron processing map hot working
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  • 1李龙飞,杨王玥,孙祖庆.Mn含量对低碳钢中铁素体动态再结晶的影响[J].金属学报,2004,40(12):1257-1263. 被引量:20
  • 2A Momeni,S M Abbasi,A Shokuhfar.Hot Compression Behavior of As-Cast Precipitation-Hardening Stainless Steel[J].Journal of Iron and Steel Research(International),2007,14(5):66-70. 被引量:9
  • 3Yang Y, Xie Z, Zhang Z, et al. Processing maps for hot deformation of the extruded 7075 aluminum alloy bar: Anisotropy of hot workability [J]. Materials Science and Engineering, 2014, 615 A: 183.
  • 4Raj R. Development of a processing map for use in warm-forming and hot forming processes[J]. Metallurgical Transaction, 1989, 12 A: 1089.
  • 5Zhou S, Deng K, Li J, et al. Hot deformation behavior and workability characteristics of bimodal size SiCp/AZ91 magnesium matrix composite with processing map [J]. Materials and Design, 2014, 64: 177.
  • 6Liu J, Li J, Cui Z, et al. Material driven workability simulation by FEM including 3D processing maps for magnesium alloy[J]. Transaction of Nonferrous Metals Society of China, 2013, 23:301 I.
  • 7Prasad Y. Processing maps: A status report[J]. Journal of Materials Engineering and Performance, 2003, 12(6): 638.
  • 8Pu E, Zheng W, Xiang J, et al. Hot deformation characteristic and processing map of superaustenitic stainless steel $32654[J]. Materials Science and Engineering, 2014, 598 A: 174.
  • 9Zhang J, Di H, Mao K. Processing maps for hot deformation of a high-Mn TWlP steel: A comparative study of various criteria based on dynamic materials model[J]. Materials Science and Engineering, 2013, 587A: 110.
  • 10Srinivasan N, Prasad Y, Rama R. Hot deformation behavior of Mg- 3A1 alloy-a study using processing map[J]. Materials Science and Engineering, 2008, 476 A: 146.

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