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A reexamination of plasticity-induced crack closure in fatigue crack propagation

✍ Scribed by Yanyao Jiang; Miaolin Feng; Fei Ding


Book ID
108147286
Publisher
Elsevier Science
Year
2005
Tongue
English
Weight
381 KB
Volume
21
Category
Article
ISSN
0749-6419

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A numerical analysis of plasticity-induced fatigue crack closure based upon the finite difference method is presented. This new method permits modelling easily fatigue crack growth as well as contacts between fracture faces, without requiring sophisticated algorithms. The model is applied to a wide

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The role of the presence of a non-deformable second phase in a soft matrix on the plasticity induced crack closure behavior of a growing fatigue crack is analyzed as a boundary value problem using elastic-plastic finite element techniques. Three cases of plasticity induced crack closure are simulate