Multiscale modelling of sandwich structured composites using direct FE2
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[1] L. H. Poh,et al. Multiscale computational homogenisation of shear-flexible beam elements: a Direct FE2 approach , 2022, Computational Mechanics.
[2] Tidong Zhao,et al. Review of carbon fiber-reinforced sandwich structures , 2022 .
[3] L. H. Poh,et al. Direct FE2 for concurrent multilevel modelling modeling of heterogeneous thin plate structures , 2022, Computer Methods in Applied Mechanics and Engineering.
[4] Peng Wu,et al. A two-scale computational continua multiscale analysis model for honeycomb sandwich plates , 2022, Mechanics of Advanced Materials and Structures.
[5] V. Tan,et al. Direct FE2 for simulating strain-rate dependent compressive failure of cylindrical CFRP , 2021, Composites Part C: Open Access.
[6] Karthikayen Raju,et al. A review of the FE2 method for composites , 2021, Multiscale and Multidisciplinary Modeling, Experiments and Design.
[7] Björn Kiefer,et al. An efficient monolithic solution scheme for FE2 problems , 2021, Computer Methods in Applied Mechanics and Engineering.
[8] Yicong Gao,et al. Creative design for sandwich structures: A review , 2020 .
[9] V. Tan,et al. Direct FE2 for concurrent multilevel modelling of heterogeneous structures , 2020 .
[10] Dinghe Li. Layerwise Theories of Laminated Composite Structures and Their Applications: A Review , 2020 .
[11] Paul Steinmann,et al. On periodic boundary conditions and ergodicity in computational homogenization of heterogeneous materials with random microstructure , 2019 .
[12] E. Carrera,et al. Multiscale CUF-FE2 nonlinear analysis of composite beam structures , 2019, Computers & Structures.
[13] K. M. Liew,et al. An overview of layerwise theories for composite laminates and structures: Development, numerical implementation and application , 2019, Composite Structures.
[14] W. Wagner,et al. On a robust FE2 model for delamination analysis in composite structures , 2018, Composite Structures.
[15] Jani Romanoff,et al. A homogenization method for geometric nonlinear analysis of sandwich structures with initial imperfections , 2016 .
[16] Werner Wagner,et al. A coupled two‐scale shell model with applications to layered structures , 2013 .
[17] Z. Guan,et al. The impact response of graded foam sandwich structures , 2013 .
[18] G. Nurick,et al. The influence of core density on the blast resistance of foam-based sandwich structures , 2012 .
[19] Martin Eerme,et al. Design and Testing of Sandwich Structures with Different Core Materials , 2012 .
[20] David L. McDowell,et al. Deformation of epoxy shape memory polymer foam: Part II. Mesoscale modeling and simulation , 2010 .
[21] E. Carrera,et al. Refined beam theories based on a unified formulation , 2010 .
[22] Paul Compston,et al. Finite element modelling of core thickness effects in aluminium foam/composite sandwich structures under flexural loading , 2008 .
[23] Johann Guilleminot,et al. Multiscale modelling of the composite reinforced foam core of a 3D sandwich structure , 2008 .
[24] Mgd Marc Geers,et al. Multi-scale computational homogenization of structured thin sheets , 2007 .
[25] C. G'sell,et al. Characterization of volume strain at large deformation under uniaxial tension in high-density polyethylene , 2006 .
[26] E. Carrera. Theories and Finite Elements for Multilayered Plates and Shells:A Unified compact formulation with numerical assessment and benchmarking , 2003 .
[27] N. Kikuchi,et al. A class of general algorithms for multi-scale analyses of heterogeneous media , 2001 .
[28] Frédéric Feyel,et al. Multiscale FE2 elastoviscoplastic analysis of composite structures , 1999 .
[29] J. N. Reddy,et al. A higher-order shear deformation theory of laminated elastic shells , 1985 .