Calculation of stress intensity factors for an interfacial crack between dissimilar anisotropic media, using a hybrid element method and the mutual integral

Author:

Chow W. T.,Beom H. G.,Atluri S. N.

Publisher

Springer Science and Business Media LLC

Subject

Applied Mathematics,Computational Mathematics,Computational Theory and Mathematics,Mechanical Engineering,Ocean Engineering,Computational Mechanics

Reference22 articles.

1. Atluri, S. N.; Nakagaki, M. 1975: Analysis of two-dimensional fracture problems involving large-scale yielding: A displacement-hybrid finite element method. Proc. 12th Annual Meeting Soc. of Engng. Science, Austin, Texas. pp. 381?386

2. Atluri, S. N.; Kobayashi, A. S.; Nakagaki, M. 1975: An assumed displacement hybrid finite element model for linear fracture mechanics. Int. J. of Fracture. 11: 257?271

3. Beom, H. G.; Atluri, S. N. 1994: Near-tip fields and stress intensity factors for interfacial cracks in dissimilar anisotropic media. Center for Computational Mechanics, Georgia Institute of Technology, March 1994

4. Brezzi, F. 1974. On the existence, uniqueness and approximation of saddle-point problems arising from Lagrange multipliers. RAIRO 8 (R2): 129?151

5. Chen, F. H. K.; Shield, R. T. 1977: Conservation laws in elasticity of j-integral type. ZAMP J. Appl. Math. Phys. 28: 1?22

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