Numerical Simulation of T-Stresses and Stress Biaxiality Factor for a Centrally Cracked Specimen under Mixed Boundary Conditions
Author:
Publisher
Pleiades Publishing Ltd
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics
Link
https://link.springer.com/content/pdf/10.1134/S002189442207015X.pdf
Reference32 articles.
1. Williams, M.L., On the stress distribution at the base of a stationary crack, J. Appl. Mech., 1957, vol. 24, pp. 109–114. https://resolver.caltech.edu/CaltechAUTHORS:20140729-122058948
2. Leevers, P.S. and Radon, J.C., Inherent stress biaxiality in various fracture specimen geometries, Int. J. Fract., 1982, vol. 19, pp. 311–325. https://doi.org/10.1007/BF00012486
3. Matvienko, Yu.G., Modeli i kriterii mekhaniki razrusheniya (Models and Criteria of Fracture Mechanics), Moscow: Fizmatlit, 2006.
4. Larsson, S.G. and Carlsson, A.J., Influence of non-singular stress terms and specimen geometry on small-scale yielding at crack tips in elastic-plastic materials, J. Mech. Phys. Solids, 1973, vol. 21, pp. 263–277. https://doi.org/10.1016/0022-5096(73)90024-0
5. Eftis, J., Subramonian, N., and Liebowitz, H., Biaxial load effects on the crack border elastic strain energy and strain energy rate, Eng. Fract. Mech., 1977, vol. 9, pp. 753–764. https://doi.org/10.1016/0013-7944(77)90001-7
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