03772nam 2200625Ia 450 991043776290332120200520144314.03-642-28463-910.1007/978-3-642-28463-2(CKB)2670000000232614(EBL)973093(OCoLC)804664657(SSID)ssj0000740730(PQKBManifestationID)11930768(PQKBTitleCode)TC0000740730(PQKBWorkID)10700759(PQKB)11711593(DE-He213)978-3-642-28463-2(MiAaPQ)EBC973093(PPN)168312042(EXLCZ)99267000000023261420120904h20122013 uy 0engur|n|---|||||txtccrContinuous and discontinuous modelling of fracture in concrete using FEM /Jacek Tejchman and Jerzy Bobiski1st ed.Berlin ;New York Springer2012, c20131 online resource (416 p.)Springer series in geomechanics and geoengineering,1866-8763Description based upon print version of record.3-642-43363-4 3-642-28462-0 Includes bibliographical references.Introduction -- General -- Literature Overview -- Theoretical Models -- Discrete Lattice Model -- Epilogue.The book analyzes a quasi-static fracture process in concrete and reinforced concrete by means of constitutive models formulated within continuum mechanics. A continuous and discontinuous modelling approach was used. Using a continuous approach, numerical analyses were performed using a finite element method and three different enhanced continuum models: isotropic elasto-plastic, isotropic damage and anisotropic smeared crack one. The models were equipped with a characteristic length of micro-structure by means of a non-local and a second-gradient theory. So they could properly describe the formation of localized zones with a certain thickness and spacing and a related deterministic size effect. Using a discontinuous FE approach, numerical results of cracks using a cohesive crack model and XFEM were presented which were also properly regularized. Finite element analyses were performed with concrete elements under monotonic uniaxial compression, uniaxial tension, bending and shear-extension. Concrete beams under cyclic loading were also simulated using a coupled elasto-plastic-damage approach. Numerical simulations were performed at macro- and meso-level of concrete. A stochastic and deterministic size effect was carefully investigated. In the case of reinforced concrete specimens, FE calculations were carried out with bars, slender and short beams, columns, corbels and tanks. Tensile and shear failure mechanisms were studied. Numerical results were compared with results from corresponding own and known in the scientific literature laboratory and full-scale tests.    .Springer Series in Geomechanics and Geoengineering,1866-8755Concrete constructionMathematical modelsStructural analysis (Engineering)Mathematical modelsFinite element methodConcrete constructionMathematical models.Structural analysis (Engineering)Mathematical models.Finite element method.624.15136Tejchman Jacek1064940Bobiski Jerzy1763092MiAaPQMiAaPQMiAaPQBOOK9910437762903321Continuous and discontinuous modelling of fracture in concrete using FEM4203349UNINA