An analytical/numerical model, referred to as the overlapping crack model, is proposed in the present paper for the analysis of the mechanical behaviour of concrete in compression. Starting from the experimental evidence of strain localisation in uniaxial compression tests, the present model is based on a couple of constitutive laws for the description of the compression behaviour of concrete: a stress–strain law until the achievement of the compression strength and a stress–displacement relationship describing the post-peak softening behaviour. The displacement would correspond to a fictitious interpenetration and therefore the concept of overlapping crack in compression is analogous to the cohesive crack in tension. According to this approach, the slenderness and size-scale effects of concrete specimens tested under uniaxial compression are interpreted from an analytical point of view. Then, implementing the overlapping crack model into the finite element method, eccentric compression tests are numerically simulated and compared with experimental results. The influence of the size-scale, the specimen slenderness, as well as the degree of load eccentricity, is discussed in detail, quantifying the effect of each parameter on the ductility of concrete specimens.
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November 2009
Research Article|
November 01 2009
The overlapping crack model for uniaxial and eccentric concrete compression tests Available to Purchase
M. Paggi
M. Paggi
Politecnico di Torino
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Department of Structural Engineering and Geotechnics, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129, Torino, Italy.
Publisher: Emerald Publishing
Revision Received:
February 20 2009
Received:
March 11 2009
Accepted:
March 11 2009
Online ISSN: 1751-763X
Print ISSN: 0024-9831
© 2009 Thomas Telford Ltd
2009
Magazine of Concrete Research (2009) 61 (9): 745–757.
Article history
Revision Received:
February 20 2009
Received:
March 11 2009
Accepted:
March 11 2009
Citation
Carpinteri A, Corrado M, Mancini G, Paggi M (2009), "The overlapping crack model for uniaxial and eccentric concrete compression tests". Magazine of Concrete Research, Vol. 61 No. 9 pp. 745–757, doi: https://doi.org/10.1680/macr.2008.61.9.745
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