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Microstructural models of three different scaffold architectures are used to investigate the degradation and mechanical behaviour of each scaffold.
The current microstructural models of blood vessels assume affine deformation, i.e., the deformation of each fiber is assumed to be identical to the macroscopic deformation of the tissue.
The algorithm is validated for a laminated composite material, for which an analytical solution is available; and then applied to 2D slices of 3D digital microstructural models of cement paste.
By using simple microstructural models of compression moulded polymer graphite composites and a FE code modified for execution on graphical processing units, we show that reliable predictions of electrical properties for these materials can now be obtained in a reasonable computational time and with acceptable accuracy and precision.
The present paper describes one step toward that goal, one that synthesizes prior work on microstructural models of soft tissues and an analytical solution from finite elasticity.
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This response is compared with a microstructural model of the FRP with several fiber arrangements, which are generated using FE.
We present a microstructural model of permeability in fractured solids, where the fractures are described in terms of recursive families of parallel, equidistant cohesive faults.
A microstructural model of articular cartilage, in which chondrocytes and pericellular matrices were represented with depth-dependent structural and morphological properties, was created.
This paper focuses on the application of a higher-order gradient-dependent plasticity damage model for microstructural modeling of dual-phase (DP) steels.
A microstructural model of carbon particle is built, in which perfect graphene stacks are taken as the basic building blocks of carbon.
A microstructural model of the membrane materials is then used to analyse the findings in more detail and rationalize the observed elastic behaviour.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com