With the aid of the basic theorem of the Mellin transform and Fourier series, the general solution of a central crack at the interface between two dissimilar media in a finite disc under longitudinal shear stress is found in this paper. It is of interest to note that the stress intensity factor of t
A central crack of mode III at the boundary cross of four different media in a finite disc
β Scribed by X.S. Zhang (Zhang Xiaosi); Wu Hong-Yao
- Publisher
- Elsevier Science
- Year
- 1990
- Tongue
- English
- Weight
- 505 KB
- Volume
- 37
- Category
- Article
- ISSN
- 0013-7944
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β¦ Synopsis
Ahatraet-With
the help of the basic theorem of the Mellin transform and residue, the general solution of a central crack at the boundary cross of four dissimilar media in a finite disc under anti-plane shear stress is obtained in the present paper. It is of interest to find that the stress intensity factor of this problem is independent on the material constants of the finite disc. The conclusion has been derived by Zhang from a two-layered and four-layered composite in a rectangular sheet containing a crack of mode III.
π SIMILAR VOLUMES
Without the customary assumption that the cracked-body is infinite in linear elastic fracture mechanics, the general solution of a central crack across the interface between two orthotropic media in a rectangular sheet under anti-plane shear is obtained by means of the Fourier transform and Fourier
THE STRESS intensity factors associated with a central crack, situated along the material interface between two different elastic media and subjected to the action of opening mode loads, have been determined in the present paper. Unlike previous results (refs [l, 8, 91 cited in the paper), Ku was fo
Abstrat-By using the Hankel transform and the Fourier series, the stress intensity factor of a concentric penny-shaped crack in a finite long cylinder of a finite radius for mode III is determined. It is proved that the concentric penny-shaped cracks in an infinite long cylinder and in an infinite c