This paper presents a semi-analytical method to predict fatigue behavior in flexure of fiber reinforced concrete (FRC) based on the equilibrium of force in the critical cracked section. The model relies on the cyclic bridging law, the so-called stress-crack width relationship under cyclic tensile lo
โฆ LIBER โฆ
A precise solution for prediction of fiber-reinforced concrete behavior under flexure
โ Scribed by R. Ahmadi; P. Ghoddousi; M. Sharifi; V. Mojarrad Bahreh
- Book ID
- 111841999
- Publisher
- SP Zhejiang University Press
- Year
- 2011
- Tongue
- English
- Weight
- 649 KB
- Volume
- 12
- Category
- Article
- ISSN
- 1009-3095
No coin nor oath required. For personal study only.
๐ SIMILAR VOLUMES
Fatigue life prediction of fiber reinfor
โ
Jun Zhang; Henrik Stang; Victor C. Li
๐
Article
๐
1999
๐
Elsevier Science
๐
English
โ 883 KB
Fatigue behavior and life prediction of
โ
Wei Wang; Sigang Wu; Hongzhe Dai
๐
Article
๐
2006
๐
Elsevier Science
๐
English
โ 306 KB
Flexural behavior of reinforced concrete
โ
Hee Sun Kim; Yeong Soo Shin
๐
Article
๐
2011
๐
Elsevier Science
๐
English
โ 853 KB
This paper reports experimental studies of reinforced concrete (RC) beams retrofitted with new hybrid fiber reinforced polymer (FRP) system consisting carbon FRP (CFRP) and glass FRP (GFRP). The objective of this study is to examine effect of hybrid FRPs on structural behavior of retrofitted RC beam
A theory for the flexural strength of st
โ
R.N. Swamy; P.S. Mangat
๐
Article
๐
1974
๐
Elsevier Science
๐
English
โ 611 KB
A model for predicting fracture resistan
โ
M. Wecharatana; S.P. Shah
๐
Article
๐
1983
๐
Elsevier Science
๐
English
โ 494 KB
Fatigue behavior of externally bonded st
โ
Patrick L. Minnaugh; Kent A. Harries
๐
Article
๐
2008
๐
Springer
๐
English
โ 492 KB