Response: Discussion of ?Prediction of threshold stress intensity for fatigue crack growth using a dislocation model,? by A. T. Yokobori, Jr.
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanics of Materials,Modeling and Simulation,Computational Mechanics
Link
http://link.springer.com/content/pdf/10.1007/BF00016004.pdf
Reference11 articles.
1. K. Sadananda and P. Shahinian, International Journal of Fracture 13 (1977) 585?594.
2. T. Yokobori, A. T. YokoboriJr., and A. Kamei, International Journal of Fracture 11 (1975) 781?788.
3. R. W. Armstrong, Materials Science Engineering 1 (1966) 251?256.
4. J. R. Rice and R. Thompson, Philosophical Magazine 29 (1974) 73?97.
5. J. Weertman, International Journal of Fracture Mechanics 2 (1966) 460.
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1. Engineering definitions of small crack and long crack at fatigue limit under tensile mean stress and a prediction method for determining the fatigue limit of a cracked Mg alloy;International Journal of Fatigue;2013-11
2. ANALYSIS OF FATIGUE CRACK PROPAGATION UNDER BIAXIAL LOADING USING AN INCLINED STRIP YIELD ZONE MODEL OF CRACK TIP PLASTICITY;Fatigue & Fracture of Engineering Materials and Structures;1986-04
3. A DISLOCATION MODEL OF THE DELAYING EFFECTS OF OVERLOAD;Fracture 84;1984
4. DISLOCATION MODELS IN FRACTURE;Dislocation Modelling of Physical Systems;1981
5. A note on closure during fatigue crack growth;International Journal of Fracture;1979-02
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