Microstructure and fatigue properties of TiAl-based alloy with different tungsten contents

被引:0
作者
Zhen-Jun Yang
Hong-Liang Sun
Ze-Wen Huang
De-Gui Zhu
Liang-Hui Wang
机构
[1] Southwest Jiaotong University,School of Materials Science and Engineering, Key Laboratory of Advanced Technologies of Materials, Ministry of Education
来源
Rare Metals | 2016年 / 35卷
关键词
TiAl-based alloy; Tungsten; Microstructure; Fatigue; Fracture;
D O I
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中图分类号
学科分类号
摘要
Microstructure and fatigue properties of TiAl-based alloys with different W contents were investigated. The results indicate that the grain size and lamellar spacing can be significantly refined, and the optimal W content on both the microstructure and fatigue property is about 1.00 at%. The amount of B2(ω) phase gradually increases with the increase in W content, and excessive B2(ω) phase located in the boundary of lamellar colony trends to be the weak region with low resistance against crack propagation. Another result is that with the increase in W content, the region of peritectic reaction is also enlarged. The interdendritic Al-rich region is another weak region against crack propagation. Both of these effects are responsible for the worse fatigue property of Ti–45.1Al–5Nb–1.40W–1.4B W alloy compared with that of Ti–45.7Al–5Nb–0.75W–1.4B alloy. Instability of fatigue property still exists, but it slightly reduces with the decrease in grain size and lamellar spacing.
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页码:113 / 117
页数:4
相关论文
共 59 条
[1]  
Wu X(2006)Review of alloy and process development of TiAl alloys Intermetallics 14 1114-undefined
[2]  
Engel U(2002)Microforming-from basic research to its realization J Mater Process Tech 125–126 35-undefined
[3]  
Eckstein R(2015)Martensite in a TiAl alloy quenched from beta phase field Intermetallics 56 87-undefined
[4]  
Hu D(2000)Phase equilibria among α (hcp), β (bcc) and γ (L10) phases in Ti–Al base ternary alloys Intermetallics 8 855-undefined
[5]  
Jiang H(2001)Effect of composition on grain refinement in TiAl-based alloys Intermetallics 9 1037-undefined
[6]  
Kainuma R(2005)Phase transformations in TiAl based alloys Acta Mater 53 2653-undefined
[7]  
Fujita Y(2007)Influence of oxygen on solidification behaviour of cast TiAl-based alloys Intermetallics 15 1343-undefined
[8]  
Mitsui H(2005)Development of Widmanstätten laths in a near-γ TiAl alloy Acta Mater 53 3783-undefined
[9]  
Ohnuma I(2006)Creep behaviour of a cast TiAl-based alloy for industrial applications Intermetallics 14 115-undefined
[10]  
Ishida K(2008)Ordered ω phases in a 4Zr–4Nb-containing TiAl-based alloy Acta Mater 56 1689-undefined