P.J. Sánchez
National Scientific and Technical Research Council
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Publication
Featured researches published by P.J. Sánchez.
Mechanics of Materials | 2016
P.J. Blanco; P.J. Sánchez; E.A. de Souza Neto; R.A. Feijóo
Abstract A multi-scale model, based on the concept of Representative Volume Element (RVE), is proposed linking a classical continuum at RVE level to a macro-scale strain-gradient theory. The multi-scale model accounts for the effect of body forces and inertia phenomena occurring at the micro-scale. The Method of Multiscale Virtual Power recently proposed by the authors drives the construction of the model. In this context, the coupling between the macro- and micro-scale kinematical descriptors is defined by means of kinematical insertion and homogenisation operators, carefully postulated to ensure kinematical conservation in the scale transition. Micro-scale equilibrium equations as well as formulae for the homogenised (macro-scale) force- and stress-like quantities are naturally derived from the Principle of Multiscale Virtual Power – a variational extension of the Hill-Mandel Principle that enforces the balance of the virtual powers of both scales. As an additional contribution, further insight into the theory is gained with the enforcement of the RVE kinematical constraints by means of Lagrange multipliers. This approach unveils the reactive nature of homogenised force- and stress-like quantities and allows the characterisation of the homogenised stress-like quantities exclusively in terms of RVE boundary data in a straightforward manner.
Journal of Applied Mechanics | 2006
P.J. Sánchez; V. E. Sonzogni; Alfredo Edmundo Huespe; Javier Oliver
A stabilized mixed finite element with elemental embedded strong discontinuities for shear band modeling is presented. The discrete constitutive model, representing the cohesive forces acting across the shear band, is derived from a rate-independent J 2 plastic continuum material model with strain softening, by using a projection-type procedure determined by the Continuum-Strong Discontinuity Approach. The numerical examples emphasize the increase of the numerical solution accuracy obtained with the present strategy as compared with alternative procedures using linear triangles.
Computer Methods in Applied Mechanics and Engineering | 2006
Javier Oliver; Alfredo Edmundo Huespe; P.J. Sánchez
International Journal of Plasticity | 2009
Alfredo Edmundo Huespe; A. Needleman; Javier Oliver; P.J. Sánchez
International Journal of Plasticity | 2008
P.J. Sánchez; Alfredo Edmundo Huespe; Javier Oliver
International Journal of Plasticity | 2015
Fernando P. Duda; Angel Ciarbonetti; P.J. Sánchez; Alfredo Edmundo Huespe
Archives of Computational Methods in Engineering | 2016
Pablo J. Blanco; P.J. Sánchez; Eduardo Alberto de Souza Neto; Raúl A. Feijóo
Mechanics of Materials | 2015
E.A. de Souza Neto; P.J. Blanco; P.J. Sánchez; R.A. Feijóo
Computer Methods in Applied Mechanics and Engineering | 2013
P.J. Sánchez; Pablo J. Blanco; Alfredo Edmundo Huespe; R.A. Feijóo
International Journal of Solids and Structures | 2010
P.J. Sánchez; Alfredo Edmundo Huespe; Javier Oliver; Sebastian Toro