High resolution numerical and experimental studies of fatigue cracks
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Reference18 articles.
1. On the finite element analysis of fatigue crack closure—1. Basic modeling issues;McClung;Engng Fracture Mech.,1989
2. On the finite element analysis of fatigue crack closure—2. Numerical results;McClung;Engng Fracture Mech.,1989
3. Micromechanisms of crack growth in a fiber-reinforced, titanium-matrix composite;Davidson,1983
4. Convenient closed form stress intensity factors for common crack configurations;Gray;Int. J. Fracture,1977
5. The influence of crack tip plasticity in the growth of small fatigue cracks;Lankford;Metall. Trans A,1984
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1. A comparison between FEM predictions and DIC results of crack tip displacement field in CT specimens made of titanium;Theoretical and Applied Fracture Mechanics;2023-10
2. On fatigue crack growth in plastically compressible hardening and hardening–softening–hardening solids using crack-tip blunting;International Journal of Fracture;2018-09-01
3. Fatigue crack closure: a review of the physical phenomena;Fatigue & Fracture of Engineering Materials & Structures;2017-02-01
4. Modeling of Fatigue Crack Growth: Dislocation Models;Reference Module in Materials Science and Materials Engineering;2016
5. Numerical modelling of plane strain plasticity induced crack closure effects for bimaterial interfacial cracks;International Journal of Fatigue;2015-08
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