Fatigue threshold and crack propagation in γ-TiAl sheets

被引:33
作者
Pippan, R [1 ]
Hageneder, P
Knabl, W
Clemens, H
Hebesberger, T
Tabernig, B
机构
[1] Austrian Acad Sci, Erich Schmid Inst Mat Wissensch, A-8700 Leoben, Austria
[2] Univ Leoben, Inst Met Phys, Leoben, Austria
[3] Plansee AG, Reutte, Austria
[4] Univ Stuttgart, Inst Mekallkunde, D-7000 Stuttgart, Germany
关键词
titanium aluminides based on TiAl; fatigue resistance and crack growth;
D O I
10.1016/S0966-9795(00)00111-4
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The fatigue crack propagation behaviour of two different microstructures - a coarse-grained designed fully lamellar (DFL), and a fine-grained near gamma (FG) - of a Ti 46.5 at.% Al 4 at.% (Cr, Nb, Ta, B) alloy was studied. Both the threshold of stress intensity range and standard long crack growth behavior were determined. A special technique was applied to separate the different mechanisms - intrinsic and extrinsic effects - and their changes with crack length. The fatigue crack propagation rate of long cracks is much smaller in the DFL microstructure than in the FG microstructure at the same stress intensity range. The effective threshold of stress intensity range of both microstructures is about 1.7 MPa(root)m. The threshold of stress intensity range shows a strong R-curve behavior. In other words the propagation-non-propagation conditions of cracks are significantly influenced by the crack extension. The long crack thresholds of stress intensity range at the stress ratio 0.1 are relatively large; they are about 4.5 and 8 MPa(root)m in the DFL and the FG microstructure, respectively. The differences in the crack growth behavior between the two microstructures are mainly induced by extrinsic resistance mechanisms. (C) 2001 Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:89 / 96
页数:8
相关论文
共 23 条
[1]   Microstructure and deformation of two-phase γ-titanium aluminides [J].
Appel, F ;
Wagner, R .
MATERIALS SCIENCE & ENGINEERING R-REPORTS, 1998, 22 (05) :187-268
[2]   Fundamental aspects of fatigue and fracture in a TiAl sheet alloy [J].
Chan, KS ;
Shih, DS .
METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 1998, 29 (01) :73-87
[3]  
CHAN KS, 1999, TMS S P, P517
[4]  
CHATTERJEE A, 1999, TMS S P, P401
[5]   Microstructural influence on the fatigue crack propagation of a gamma-TiAl alloy [J].
Choi, C ;
Lee, YT ;
Lee, CS .
SCRIPTA MATERIALIA, 1997, 36 (07) :821-827
[6]  
Clemens H, 1999, Z METALLKD, V90, P569
[7]  
DAMANI RJ, 1996, SCI REPORT
[8]  
HEBESBERGER T, 1999, TMS S P, P573
[9]  
HENAFF G, 1999, TMS S P, P549
[10]  
Huang ZW, 1999, GAMMA TITANIUM ALUMINIDES 1999, P473