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Microstructure and Mechanical Properties of 1,000 MPa Ultra-High Strength Hot-Rolled Plate Steel for Coal Mine Refuge Chamber 被引量:2
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作者 Changsheng Li Biao Ma +1 位作者 Tao Li Tao Zhu 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2014年第3期422-429,共8页
The 1,000 MPa ultra-high strength hot-rolled plate steel with low-carbon bainitic microstructure was developed in the laboratory for coal mine refuge chamber. The static recrystallization behavior, microstructure evol... The 1,000 MPa ultra-high strength hot-rolled plate steel with low-carbon bainitic microstructure was developed in the laboratory for coal mine refuge chamber. The static recrystallization behavior, microstructure evolution, and mechanical properties of this hot-rolled plate steel were investigated by the hot compression, continuous cooling trans- formation, and tensile deformation test. The results show that the developed steel has excellent mechanical properties at both room and elevated temperature, and its microstructure mainly consists of lath bainite, granular bainite, and ferrite after thermal-mechanical control process (TMCP). The ultra-high strength plate steel is obtained by the TMCP process in hot rolling, strengthened by bainitic transformation, microstructure refinement, and precipitation of alloying elements such as Nb, Ti, Mo, and Cu. The experimental steel has relatively low welding crack sensitivity index and high atmospheric corrosion resistance index. Therefore, the developed steel has a good balance of strength and ductility both at room and elevated temperature, weldability and corrosion resistance, and it can suffice for the basic demands for materials in the manufacture of coal mine refuge chamber. 展开更多
关键词 ultra-high strength steel low-carbon bainite Coal mine refuge chamber MICROSTRUCTURE mechanical property
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低碳马氏体型超高强度钢的设计与开发 被引量:1
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作者 王笑天 谈育煦 +2 位作者 丁秉钧 高惠临 段文森 《西安交通大学学报》 EI CAS CSCD 北大核心 1994年第7期9-14,20,共7页
在多年来对低碳马氏体型超高强度钢研究的基础上,介绍了试验钢25Si2Mn2CrNiMoVA设计思想,系统地讨论了试验钢的综合力学性能,并对其显微组织特征及微观断裂机理进行了深入分析,文中还讨论了试验钢的应用前景.
关键词 低碳 马氏体 超高强度钢 力学性能
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