An approach for modelling concrete spalling in finite strains
A new approach for modelling concrete spalling process is here proposed, taking into account a fully nonlinear-displacement/strain theory able to catch complex interactions between pressure, thermal and mechanical fields. The micro-structural modelling of concrete under fire conditions is derived from a mechanical and thermodynamic consistent theory and it is strictly related to a self-consistent, carefully extracted set of experimental data, in order to make a correct validation and calibration of the numerical F.E. procedures and codes. Even if appearing as a first but successful example, it is shown that a procedure accounting for coupled material and geometric nonlinearities is able to attain valuable and realistic numerical results concerning spalling process in concrete.
Year of publication: |
2010
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Authors: | Majorana, C.E. ; Salomoni, V.A. ; Mazzucco, G. ; Khoury, G.A. |
Published in: |
Mathematics and Computers in Simulation (MATCOM). - Elsevier, ISSN 0378-4754. - Vol. 80.2010, 8, p. 1694-1712
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Publisher: |
Elsevier |
Subject: | Concrete spalling | Micro-structural modelling | Finite strains |
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