Latin American Journal of Solids and Structures · 2016 · 12 citations · 37 references
Finite Element MethodEngineeringImpact LoadingCivil EngineeringBlastingReinforced ConcreteMechanical EngineeringFiber-reinforced Cement CompositeFracture FailureStructural ApplicationBlast LoadingCrack FormationStructural MechanicsDynamic Crack PropagationMechanics Of MaterialsStructural Engineering
Numerical modeling of fracture failure is challenging due to various issues in the constitutive law and the transition of continuum to discrete bodies. Therefore, this study presents the application of the combined finite-discrete element method to investigate the fracture failure of reinforced concrete slabs subjected to blast loading. In numerical modeling, the interaction of non-uniform blast loading on the concrete slab was modeled using the incorporation of the finite element method with a crack rotating approach and the discrete element method to model crack, fracture onset and its post-failures. A time varying pressure-time history based on the mapping method was adopted to define blast loading. The Mohr-Coulomb with Rankine cut-off and von-Mises criteria were applied for concrete and steel reinforcement respectively. The results of scabbing, spalling and fracture show a reliable prediction of damage and fracture.
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Blast Loading and Blast Effects on Structures – An Overview
Tuan Ngo, Priyan Mendis, Anil Gupta et al. · Electronic Journal of Structural Engineering · 2007 · 572 citations · Full text