AbstractÐCreep in precipitation-strengthened alloys usually exhibits a pronounced transition in the stress vs creep rate relationship due to dislocations bypassing of particles by climb at low stresses. In the present study, a single-slope behavior is observed in creep of b'(NiAl) strengthened ferri
✦ LIBER ✦
Thermal cycling creep behavior of NiAl–Cr alloy
✍ Scribed by R.S. Sundar; K. Kitazono; E. Sato; K. Kuribayashi
- Book ID
- 117681253
- Publisher
- Elsevier Science
- Year
- 2001
- Tongue
- English
- Weight
- 778 KB
- Volume
- 9
- Category
- Article
- ISSN
- 0966-9795
No coin nor oath required. For personal study only.
📜 SIMILAR VOLUMES
Creep behavior of a β′(NiAl) precipitati
✍
S.M. Zhu; S.C. Tjong; J.K.L. Lai
📂
Article
📅
1998
🏛
Elsevier Science
🌐
English
⚖ 396 KB
Thermal stability and creep behavior of
✍
Y.Q. Zhao; H.L. Qu; M.M. Wang; H. Wu; K.Y. Zhu
📂
Article
📅
2006
🏛
Elsevier Science
🌐
English
⚖ 546 KB
Thermal-cycling creep of γ-TiAl-based al
✍
C. Schuh; D.C. Dunand; A. Wanner; H. Clemens
📂
Article
📅
2000
🏛
Elsevier Science
🌐
English
⚖ 491 KB
Deformation behavior and microstructure
✍
C.Y. Cui; J.T. Guo; Y.H. Qi; H.Q. Ye
📂
Article
📅
2002
🏛
Elsevier Science
🌐
English
⚖ 622 KB
High Temperature Creep Behavior of Auste
✍
Hamzah, Esah; Mudang, Maureen; Khwang Jenq, Ang; Adil Khattak, Muhammad
📂
Article
📅
2013
🏛
Trans Tech Publications, Ltd.
🌐
English
⚖ 970 KB
Thermal cycling creep of α-uranium
✍
A.C. Roberts
📂
Article
📅
1960
🏛
Elsevier Science
⚖ 353 KB
The enhanced strength of the material, due to the presence of the precipitate particles, arises from the necessity for deformation dislocations to cut through these dislocations loops. The yield strength is then given by: TABLE 1. Coefficients of thermal expansion ( x 10-l) along crystal axes in alp