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Electronic Structures and Alloying Behaviors of Ferrite Phases in High Co-Ni Secondary Hardened Martensitic Steels 被引量:1
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作者 Guoying ZHANG+ and Meiguang ZENG (Northeastern University, Shenyang 110006, China) Guili LIU (Shenyang Polytechnic Universityt Shenyang 110023, China) 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2000年第5期495-498,共4页
The electronic structure of ferrite (tempered martensite phase) in high Co-Ni secondary hardened martensitic steel has been investigated. The local density of states (LOOS) of alloying elements in the steel displays t... The electronic structure of ferrite (tempered martensite phase) in high Co-Ni secondary hardened martensitic steel has been investigated. The local density of states (LOOS) of alloying elements in the steel displays the relationship between solid solubility and the shape of the LDOS. The bond order integral (BOI) between atoms in the steel shows that the directional bonding of the p orbital of Si or C leads to the brittleness of the steel. At last, ΣBOI between atoms demonstrate that C, Co, Mn, Cr, Mo, Si strengthen the alloyed steel through solid-solution effects. 展开更多
关键词 Electronic Structures and Alloying Behaviors of ferrite phases in High Co-Ni Secondary Hardened Martensitic Steels NI
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Precipitate Phases in an 11% Cr Ferritic/Martensitic Steel with Tempering and Creep Conditions 被引量:5
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作者 Xiao-Ling Zhou Yin-Zhong Shen Zhi-Qiang Xu 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2015年第1期48-57,共10页
Precipitates in an 11% Cr ferritic/martensitic steel containing Nd with tempering and creep conditions were investigated using transmission electron microscope with energy-dispersive X-ray spectroscopy. The precipitat... Precipitates in an 11% Cr ferritic/martensitic steel containing Nd with tempering and creep conditions were investigated using transmission electron microscope with energy-dispersive X-ray spectroscopy. The precipitates in the steel with a tempering condition were identified to be Cr-rich M23C6 carbide, Nb-rich/V-rich/Ta–Nb-rich MX carbides, Nbrich MX carbonitride, and Fe-rich M5C2 carbide. Nd-rich carbonitride, which is not known to have been reported previously in steels, was also detected in the steel after tempering. Most of the Nb-rich MX precipitates were dissolved, whereas the amount of Ta-rich MX precipitates was increased significantly in the steel after a creep test at 600 °C at an applied stress of180 MPa for 1,100 h. No Fe2 W Laves phase has been detected in the steel after tempering.(Fe, Cr)2W Laves phase with a relatively large size was observed in the steel after the creep test. 展开更多
关键词 Precipitate phase High-Cr ferritic/martensitic steel High temperature creep Transmission electron microscope
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Micromechanical Behavior and Failure Mechanism of F / B Multi-phase High Performance Steel 被引量:7
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作者 Cun-jiang TANG Shi-long LIU Cheng-jia SHANG 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2016年第5期489-494,共6页
The deformation and micro-voids formation mechanisms in ferrite / bainite( F / B) multi-phase steel with the volume fraction of bainite less than 50% were studied by numerical simulation and experimental observation... The deformation and micro-voids formation mechanisms in ferrite / bainite( F / B) multi-phase steel with the volume fraction of bainite less than 50% were studied by numerical simulation and experimental observation. The results show that the micro-strain concentrates at the soft / hard phase( F / B) interface in the multi-phase steel,which should be correlated with the mechanism of incoordinate deformation. During the necking of the steel,the micro-voids initially form around the F / B interface,which also form in ferrite and bainite with the severe strain. The micro-voids in bainite are more dense and finer than those in ferrite. The failure mechanism of bainite is the coalescence of micro-voids,and the failure mechanism of ferrite is the growth and tearing of micro-voids. Due to the different failure mechanisms of ferrite and bainite,a suitable part of soft phase would be beneficial to the capability of anti-failure of F / B multi-phase steel during the ductile fracture. 展开更多
关键词 ferrite / bainite multi-phase steel numerical simulation ferrite / bainite interface micro-strain micro-void failure mechanism soft phase
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