Numerical analysis of blunting of a crack tip in a ductile material under small-scale yielding and mixed mode loading

Author:

Saka M.,Abé H.,Tanaka S.

Publisher

Springer Science and Business Media LLC

Subject

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

Reference12 articles.

1. Ahmad, J.; Barnes, C.R.; Kanninen, M.F. (1983): An elastoplastic finite-element investigation of crack initiation under mixed mode static and dynamic loading. In: Shih, C.F.; Gudas, J.P. (eds) : Elastic-plastic fracture. American Society for Testing and Materials STP 803, 1214–1239

2. Cotterell, B.; Lee, E.; Mai, Y.W. (1982): Mixed mode plane stress ductile fracture. Int. J. Fract. 20, 243–250

3. Gao, Y.C. (1980): Elastic-plastic field of a crack before growing in perfectly plastic medium, (in Chinese). Acta Solid Mech. Sinica 1, 69–75

4. Landes, J. D.; Begley, J.A.; Clarke, G.A. (1979): Elastic-plastic fracture. American Society for Testing and Materials STP 668

5. Miyoshi, T.; Shiratori, M. (1982): Analysis of the relation between the J-integral and CTOD by finite element method, (in Japanese). Trans. JSME, Ser. A, 48, 590–597

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