Title of article :
An enhanced continuous–discontinuous multiscale method for modeling mode-I cohesive failure in random heterogeneous quasi-brittle materials
Author/Authors :
Nguyen، نويسنده , , Vinh Phu and Stroeven، نويسنده , , Martijn and Sluys، نويسنده , , Lambertus Johannes Sluys، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2012
Pages :
25
From page :
78
To page :
102
Abstract :
In this manuscript we present an extension of the computational homogenization scheme for cohesive crack modeling of heterogeneous quasi-brittle materials which has recently been proposed by the authors. The proposed continuous–discontinuous multiscale method is a combination of the standard bulk computational homogenization theory and the recently developed discontinuous homogenization scheme to model the transition of microscopic diffusive damage to macro-cracks for tensile cracking problems. A new evolutionary boundary condition for the microscopic samples is presented. Numerical examples including verification against a direct numerical simulation and crack propagation simulations are given to demonstrate the capabilities of the method. The proposed homogenization scheme allows to define a representative volume for random heterogeneous quasi-brittle materials that show strain localization.
Keywords :
Fully coupled multiscale , Representative volume element (RVE) , Multiscale cohesive law , Random heterogeneous quasi-brittle materials , Computational homogenization
Journal title :
ENGINEERING FRACTURE MECHANICS
Serial Year :
2012
Journal title :
ENGINEERING FRACTURE MECHANICS
Record number :
2343572
Link To Document :
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