Fatigue-creep interaction is the main reason for the failures of many engineering components under high temperature and cyclic loading. In this paper a new model for the life prediction of fatigue-creep interaction has been developed. In this model, the law of energy conservation and the momentum co
β¦ LIBER β¦
A through-process model of an A356 brake caliper for fatigue life prediction
β Scribed by D. M. Maijer; Y. X. Gao; P. D. Lee; T. C. Lindley; T. Fukui
- Book ID
- 107440498
- Publisher
- The Minerals, Metals & Materials Society
- Year
- 2004
- Tongue
- English
- Weight
- 868 KB
- Volume
- 35
- Category
- Article
- ISSN
- 1073-5623
No coin nor oath required. For personal study only.
π SIMILAR VOLUMES
A new model for life prediction of fatig
β
Ling Chen; Jialing Jiang; Zhichao Fan; Xuedong Chen; Tiecheng Yang
π
Article
π
2007
π
Elsevier Science
π
English
β 146 KB
A microstructural model for the predicti
β
J.S. Park; S.H. Park; C.S. Lee
π
Article
π
2002
π
Elsevier Science
π
English
β 110 KB
A mechanistic model for fatigue life pre
β
Soon-Bok Lee; Jin-Ki Kim
π
Article
π
1997
π
Elsevier Science
π
English
β 596 KB
A model for low cycle fatigue crack adva
β
Oh, Yong Jun; Nam, Soo Woo
π
Article
π
1992
π
Elsevier Science
β 334 KB
Fatigue of structural plywood under cycl
β
Takanori Sugimoto; Yasutoshi Sasaki; Mariko Yamasaki
π
Article
π
2007
π
Springer
π
English
β 484 KB
Quantitative analysis on low cycle fatig
β
H.J Kim; C.S Lee; S.H Park; D.H Shin
π
Article
π
2004
π
Elsevier Science
π
English
β 299 KB
A study has been made to develop a model predicting the low cycle fatigue life of a material in relation to its microstructural variables. To achieve this goal, the concept of damage accumulation by multiple surface cracks has been adopted. An equation for stage I crack growth suggested by Tomkins w