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New Steel Making Process through Reduction and Sintering of Cementite Powder
作者姓名:N.OUCHIDA  M.EGASHIRA  K.NAKASHIMA  T.TSUCHIYAMA  S.TAKAKI
作者单位:[1]DepartmentofMaterialsScienceandEngineering,KyushuUniversity, [2]DepartmentofMaterialsScienceandEngineering,KyushuUniversity,/SumitomoMetalIndustries,Ltd.
摘    要:A new steel making process through reduction and sintering treatment of cementite powder was proposed, and microstructure of the material obtained by this process was examined by scanning electron microscopy and EBSP analysis.The cementite powder obtained by mechanical alloying was compacted under high pressure up to 1000MPa, and then reduced during sintering in a hydrogen (H2) gas atmosphere at elevated temperatures. The cementite compacts were completely reduced by the sintering at 1073K to 1273K for 18ks. The relative density of sintered material became 95% or more when the temperature was elevated above 1173K. The SEM observation and EBSP analysis indicated that the obtained steel has equiaxed ferrite-pearlite structure with grain size of around 5μm and the crystallographic orientations of ferrite grains are randomly distributed.

关 键 词:碳化铁  粉末冶金  破碎比  烧结

New Steel Making Process through Reduction and Sintering of Cementite Powder
N.OUCHIDA M.EGASHIRA K.NAKASHIMA T.TSUCHIYAMA S.TAKAKI.New Steel Making Process through Reduction and Sintering of Cementite Powder[J].Transactions of Materials and Heat Treatment,2004,25(5):76-79.
Authors:NOUCHIDA  MEGASHIRA  KNAKASHIMA  TTSUCHIYAMA  STAKAKI
Affiliation:1. Department of Materials Science and Engineering, Kyushu University
2. Sumitomo Metal Industries, Ltd;Department of Materials Science and Engineering, Kyushu University
Abstract:A new steel making process through reduction and sintering treatment of cementite powder was proposed, and microstructure of the material obtained by this process was examined by scanning electron microscopy and EBSP analysis. The cementite powder obtained by mechanical alloying was compacted under high pressure up to lOOOMPa, and then reduced during sintering in a hydrogen (H2) gas atmosphere at elevated temperatures. The cementite compacts were completely reduced by the sintering at 1073K to 1273K for 18ks. The relative density of sintered material became 95% or more when the temperature was elevated above 1173K. The SEM observation and EBSP analysis indicated that the obtained steel has equiaxed ferrite-pearlite structure with grain size of around Sum and the crystallographic orientations of ferrite grains are randomly distributed.
Keywords:cementite  powder metallurgy  reduction  sintering  hydrogen
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