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Microstructural evolution of a PM TiAl alloy during heat treatment in α+γ phase field 被引量:5
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作者 SU Meike ZHENG Lijing +2 位作者 LANG Zebao YAN Jie ZHANG Hu 《Rare Metals》 SCIE EI CAS CSCD 2012年第5期424-429,共6页
In this study, the effect of temperatures and cooling rates of heat treatment on the microstructure of a powder metallurgy (PM) Ti-46Al-2Cr-2Nb-(B,W) (at.%) alloy was studied. Depending on the cooling rate and tempera... In this study, the effect of temperatures and cooling rates of heat treatment on the microstructure of a powder metallurgy (PM) Ti-46Al-2Cr-2Nb-(B,W) (at.%) alloy was studied. Depending on the cooling rate and temperature, the different structures were obtained from the initial near-γ (NG) microstructures by heat treatment in the α+γ field. The results show that the microstructures of samples after furnace cooling (FC) consist primarily of equiaxed γ and α 2 grains, with a few grains containing lamellae. Duplex microstructures consist mainly of γ grains and lamellar colonies were obtained in the quenching into another furnace at 900°C (QFC) samples. However, further increasing of the cooling rate to air cooling (AC) induces the transformation of α→α_2 and results in a microstructure with equiaxed γ and α_2 grains, and no lamellar colonies are found. 展开更多
关键词 γ-TiAl-based alloys powder metallurgy heat treatment duplex structure phase volume fractions
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The microstructural nanoindentation characteristics of different phases in precision annealed GCr15 steel
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作者 Zhang Junbao Yang Xiaoping Wang Xiufang Shi Bi Song Hongwei 《Baosteel Technical Research》 CAS 2008年第4期51-54,共4页
This study characterizes the mechanical properties and volume fractions of the different phases in precision annealed GCr15 steel using nanoindentation technology. Experimental results indicate that the nanoindentatio... This study characterizes the mechanical properties and volume fractions of the different phases in precision annealed GCr15 steel using nanoindentation technology. Experimental results indicate that the nanoindentation hardness of cementite grains is between 14.15 GPa and 17.61 GPa,with a mean value of 15.40 GPa. This hardness is much higher than the hardness of ferrite grains. The nanoindentation hardness of ferrite is between 2.78 GPa and 4.89 GPa, with a mean value of 3.35 GPa. The volume fractions of the different phases were also determined using nanoindentation technology, and the volume fraction of cementite in the steel was identified as 15%. 展开更多
关键词 NANOINDENTATION GCr15 steel mechanical properties of microstructures volume fractions of different phases
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