Title of article
A damage-plasticity interface approach to the meso-scale modelling of concrete subjected to cyclic compressive loading
Author/Authors
Grassl، نويسنده , , Peter and Rempling، نويسنده , , Rasmus، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2008
Pages
15
From page
4804
To page
4818
Abstract
Concrete is characterised by stiff inclusions in a soft matrix separated by weak interfacial transition zones (ITZs). Subjected to cyclic loading, this material exhibits a strongly nonlinear response, which is characterised by the occurrence of hysteresis loops. Furthermore, for cyclic loading, failure may occur before the equivalent strength for monotonic loading is reached. The present work investigates, whether the occurrence of permanent displacements in different phases of the meso-structure of quasi-brittle heterogeneous materials, such as concrete, leads to damage evolution during repeated loading.
three-dimensional interface model based on a combination of damage mechanics and the theory of plasticity is proposed, which allows one to control the ratio of permanent and total inelastic displacements. The model is based on only a few material parameters, which can be directly determined by experiments.
terface model is applied to the plane-stress analysis of an idealised heterogeneous material with cylindrical inclusions and ITZs subjected to cyclic compressive stresses.
Keywords
plasticity , Cyclic loading , Meso-scale , Concrete , fracture , Compression , damage mechanics
Journal title
ENGINEERING FRACTURE MECHANICS
Serial Year
2008
Journal title
ENGINEERING FRACTURE MECHANICS
Record number
2342574
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