Isothermal Diagrams of Precipitation of Silicide and Aluminide Phases in Refractory Titanium Alloys

被引:0
作者
A. A. Popov
M. A. Popova
机构
[1] Ural Federal University after the First President of Russia B. N. Eltsyn,
来源
Metal Science and Heat Treatment | 2017年 / 58卷
关键词
titanium alloys; silicides; aluminides; thermokinetic diagrams;
D O I
暂无
中图分类号
学科分类号
摘要
Processes of precipitation of silicides and aluminides in commercial titanium alloys under different modes of heat treatment are studied. The effect of alloying on the types of precipitating particles is considered. The temperature ranges of formation of intermetallics are determined and the possible mechanisms of transformation of particles of different types are discussed. A schematic isothermal diagram of decomposition of metastable phases in refractory titanium alloys is suggested.
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页码:662 / 666
页数:4
相关论文
共 39 条
[21]   Effect of the method of heat treatment on formation of structure and properties of refractory titanium alloys [J].
Popov, A. A. ;
Narygina, I. V. ;
Popova, M. A. .
METAL SCIENCE AND HEAT TREATMENT, 2013, 54 (11-12) :633-637
[22]   Application of artificial neural network for prediction of time-temperature-transformation diagrams in titanium alloys [J].
Malinov, S ;
Sha, W ;
Guo, Z .
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2000, 283 (1-2) :1-10
[23]   Preferred precipitation of ordered α2 phase at dislocations and boundaries in near-α titanium alloys [J].
Zhang, J ;
Li, D .
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2003, 341 (1-2) :229-235
[24]   Analysis of Size Mismatch of the Lattices of α- and α2-phases in Model Titanium Pseudo-α-Alloys [J].
Popov, A. A. ;
Popov, N. A. ;
Lugovaya, K., I ;
Popova, E. N. ;
Narygina, I., V .
METAL SCIENCE AND HEAT TREATMENT, 2022, 64 (1-2) :20-25
[25]   Analysis of Size Mismatch of the Lattices of α- and α2-phases in Model Titanium Pseudo-α-Alloys [J].
A. A. Popov ;
N. A. Popov ;
K. I. Lugovaya ;
E. N. Popova ;
I. V. Narygina .
Metal Science and Heat Treatment, 2022, 64 :20-25
[26]   Characterisation of phases in nanostructured, multilayered titanium alloys by analytical and high-resolution electron microscopy [J].
Czyrska-Filemonowicz, A. ;
Buffat, P. A. .
MICRON, 2009, 40 (01) :15-21
[27]   Understanding the formation of equiaxed α during dynamic precipitation in titanium alloys by elastoplastic phase field simulation [J].
Zhang, Lei ;
Li, Junjie ;
Wang, Yujian ;
Wang, Zhijun ;
He, Feng ;
Wang, Lei ;
Wang, Jincheng .
JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2023, 27 :8181-8196
[28]   Research Trends in Isothermal Near-Net-Shape Forming Process of High-Performance Titanium Alloys [J].
Chu, Shuangjie ;
Huang, Weiwei ;
Liang, Gaofei ;
Meng, Qingtong ;
Zhou, Xiangyu ;
Mao, Bo .
MATERIALS, 2025, 18 (03)
[29]   Enhanced uniform elongation by pre-straining with deformation twinning in high-strength β-titanium alloys with an isothermal ω-phase [J].
Min, Xiaohua ;
Tsuzaki, Kaneaki ;
Emura, Satoshi ;
Tsuchiya, Koichi .
PHILOSOPHICAL MAGAZINE LETTERS, 2012, 92 (12) :726-732
[30]   Making titanium alloys ultrahigh strength and toughness synergy through deformation kinks-mediated hierarchical α-precipitation [J].
Li, Keer ;
Chen, Wei ;
Zhang, Jinyu ;
Xin, Shewei ;
Sun, Jun .
Journal of Materials Science and Technology, 2025, 207 :142-159