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Intercritical Rolling Induced Ultrafine Lamellar Structure and Enhanced Mechanical Properties ofMedium-Mn Steel
引用本文:Wei ZHAN,Li-qiang CAO,Jun HU,Wen-quan CAO,Jian LI,HanDONG. Intercritical Rolling Induced Ultrafine Lamellar Structure and Enhanced Mechanical Properties ofMedium-Mn Steel[J]. 钢铁研究学报(英文版), 2014, 21(5): 551-558. DOI: 10.1016/S1006-706X(14)60086-8
作者姓名:Wei ZHAN  Li-qiang CAO  Jun HU  Wen-quan CAO  Jian LI  HanDONG
作者单位:[1]College of Materials Science and Engineering, Huazhong University of Science and Technology, Wuhan 430074, Hubei, China; [2]Institute for Structural Materials, Central Iron and Steel Research Institute(CISRI), Beijing 100081, China)
基金项目:Item Sponsored by National Basic Research Program (973 Program) of China (2010CB630830)
摘    要:The medium-Mn steel with ferrite and austenite structure was rolled in the intercritical region down to dif- ferent rolling reduction. The microstructure and mechanical properties of the rolled steels were investigated by scan- ning electron microscopy, transmission electron microscopy, X-ray diffraction and tensile tests. It was found that the ferrite and austenite structure gradually evolved into an ultrafine structure from the random directional lath structure to lamellar structure with lath longitudinal direction parallel to the rolling direction with increasing rolling strain. It was found that the thickness of the laths was gradually refined with increasing rolling strain. The lath thickness is about 0. 15 9m stored with high density dislocations and the austenite volume fraction of the steel is about 24% after 80% rolling reduction. Furthermore, it was interesting to find that yield strength, tensile strength and total elongation of the 80% rolled medium-Mn steel are about 1000 MPa, 1250 MPa and 24%, respectively, demonstrating an excellent combination of the strength and ductility. Based on the microstructure examination, it was proposed that the grain refinement of the medium-Mn steels could be attributed to the duplex structure and the low rolling temperature. Analysis of the relationship between the microstructure and the mechanical properties indicated that the high yield strength mainly resulted from the ultrafine grain size and the high density dislocation, but the improved ductili- ty may be attributed to the large fractions of austenite retained after intercritical rolling.

关 键 词:轧制方向  层状结构  机械性能  超细结构  锰钢  两相区  奥氏体结构  扫描电子显微镜
收稿时间:2012-11-30

Intercritical Rolling Induced Ultrafine Lamellar Structure and Enhanced Mechanical Properties of Medium-Mn Steel
Wei ZHAN,Li-qiang CAO,Jun HU,Wen-quan CAO,Jian LI,Han DONG. Intercritical Rolling Induced Ultrafine Lamellar Structure and Enhanced Mechanical Properties of Medium-Mn Steel[J]. Journal of Iron and Steel Research, 2014, 21(5): 551-558. DOI: 10.1016/S1006-706X(14)60086-8
Authors:Wei ZHAN  Li-qiang CAO  Jun HU  Wen-quan CAO  Jian LI  Han DONG
Affiliation:1. College of Materials Science and Engineering, Huazhong University of Science and Technology, Wuhan 430074, Hubei, China 2. Institute for Structural Materials, Central Iron and Steel Research Institute CISRI, Beijing 100081, China
Abstract: The medium-Mn steel with ferrite and austenite structure was rolled in the intercritical region down to different rolling reduction. The microstructure and mechanical properties of the rolled steels were investigated by scanning electron microscopy, transmission electron microscopy, X-ray diffraction and tensile tests. It was found that the ferrite and austenite structure gradually evolved into an ultrafine structure from the random directional lath structure to lamellar structure with lath longitudinal direction parallel to the rolling direction with increasing rolling strain. It was found that the thickness of the laths was gradually refined with increasing rolling strain. The lath thickness is about 0. 15 μm stored with high density dislocations and the austenite volume fraction of the steel is about 24% after 80% rolling reduction. Furthermore, it was interesting to find that yield strength, tensile strength and total elongation of the 80% rolled medium-Mn steel are about 1000 MPa, 1250 MPa and 24%, respectively, demonstrating an excellent combination of the strength and ductility. Based on the microstructure examination, it was proposed that the grain refinement of the medium-Mn steels could be attributed to the duplex structure and the low rolling temperature. Analysis of the relationship between the microstructure and the mechanical properties indicated that the high yield strength mainly resulted from the ultrafine grain size and the high density dislocation, but the improved ductility may be attributed to the large fractions of austenite retained after intercritical rolling.
Keywords:intercritical rolling   medium manganese steel   rolling reduction   ultrafine lamellar structure    
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