AbUmct-S&ess and strain Md of a propagating fatigue crack and the resulting crack opening and &sing behavior were anaiyscd. It was found that a propq&g fatigue crack was closed at ten& external Ioads due to the cyclic&y induced residual stresses. Strain range v&e AC, in the vicinity of the crack tip
A multifractal analysis of fatigue crack growth and its application to concrete
โ Scribed by Andrea Carpinteri; Andrea Spagnoli; Sabrina Vantadori
- Publisher
- Elsevier Science
- Year
- 2010
- Tongue
- English
- Weight
- 675 KB
- Volume
- 77
- Category
- Article
- ISSN
- 0013-7944
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โฆ Synopsis
a b s t r a c t
As is well-known, strength of materials is influenced by the specimen or structure size. In particular, several experimental campaigns have shown a decrease of the material strength under static or fatigue loading with increasing structure size, and some theoretical arguments have been proposed to interpret such a phenomenon. As far as fatigue crack growth is concerned, limited information on size effect is available in the literature, particularly for so-called quasi-brittle materials like concrete. In the present paper, by exploiting concepts of fractal geometry, some definitions of fracture energy and stress intensity factor based on physical dimensions different from the classical ones are discussed. A multifractal sizedependent fatigue crack growth law (expressing crack growth rate against stress intensity factor range) is proposed and used to interpret relevant experimental data related to concrete.
๐ SIMILAR VOLUMES
Extending a previous method for calculating shrinkage stresses, loading-unloading conditions governing a nonlinear stress-strain behaviour of concrete in tension are presented. The strain-softening part (falling branch) is included in the model. The proposed method is demonstrated by fitting shrinka