Title of article :
Influence of the meso-structure in dynamic fracture simulation of concrete under tensile loading
Author/Authors :
L. Snozzi، نويسنده , , A. Caballero، نويسنده , , J.F. Molinari ، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2011
Pages :
13
From page :
1130
To page :
1142
Abstract :
We investigate the dynamic behavior of concrete in relation to its composition within a computational framework (FEM). Concrete is modeled using a meso-mechanical approach in which aggregates and mortar are represented explicitly. Both continuum phases are considered to behave elastically, while nucleation, coalescence and propagation of cracks are modeled using the cohesive-element approach. In order to understand the loading-rate sensitivity of concrete, we simulate direct tensile-tests for strain rates ranging 1–1000 s−1. We investigate the influence of aggregate properties (internal ordering, size distribution and toughness) on peak strength and dissipated fracture energy. We show that a rate independent constitutive law captures the general increase of peak strength with strain rate. However, a phenomenological rate-dependent cohesive law is needed to obtain a better agreement with experiments. Furthermore, at low rates, peak strength is sensitive to the inclusionsʹ toughness, while the matrix dominates the mechanical behavior at high rates.
Keywords :
C. Finite element analysis , C. Micromechanics , E. Concrete , C. Tensile properties
Journal title :
CEMENT AND CONCRETE RESEARCH
Serial Year :
2011
Journal title :
CEMENT AND CONCRETE RESEARCH
Record number :
1217014
Link To Document :
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