A kinematically consistent second-order computational homogenisation framework for thick shell models
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Publication:2160388
DOI10.1016/j.cma.2022.115136OpenAlexW4283072316MaRDI QIDQ2160388
Bassam El Said, Aewis K. W. Hii
Publication date: 3 August 2022
Published in: Computer Methods in Applied Mechanics and Engineering (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.cma.2022.115136
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Cites Work
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- Computational homogenisation of composite plates: consideration of the thickness change with a modified projection strategy
- On shear correction factors in the nonlinear theory of elastic shells
- On the representation of Prandtl-Reuss tensors within the framework of multiplicative elastoplasticity
- \(FE^2\) multiscale approach for modelling the elastoviscoplastic behaviour of long fibre SiC/Ti composite materials
- On the physical significance of higher-order kinematic and static variables in a three-dimensional shell formulation
- A theory and finite element formulation of shells at finite deformations involving thickness change: Circumventing the use of a rotation tensor
- Effective properties of composite materials with periodic microstructure: A computational approach
- Prediction of the mechanical behavior of nonlinear heterogeneous systems by multi-level finite element modeling
- Multiscale computational homogenization methods with a gradient enhanced scheme based on the discontinuous Galerkin formulation
- A stress-resultant shell theory based on multiscale homogenization
- Multi-scale second-order computational homogenization of multi-phase materials: a nested finite element solution strategy
- Homogenization assumptions for coupled multiscale analysis of structural elements: beam kinematics
- A coupled two-scale shell model with applications to layered structures
- Multiscale computational homogenization of heterogeneous shells at small strains with extensions to finite displacements and buckling
- Computational homogenization for heterogeneous thin sheets
- Scale transition and enforcement of RVE boundary conditions in second-order computational homogenization
- A geometric and material nonlinear plate and shell element
- A fast incremental/iterative solution procedure that handles “snap-through”
- Shell theory versus degeneration—a comparison in large rotation finite element analysis
- Shear correction factors for plates and shells
- Multi‐scale constitutive modelling of heterogeneous materials with a gradient‐enhanced computational homogenization scheme
- Essential boundary conditions and multi-point constraints in finite element analysis