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Models of composite creep behavior are compared to the experimental data over the full range of compositions studied.
Based on experimental works, three dimensional finite element models of composite joints were established.
This model is based upon the analysis of the representative volume element (RVE) models of composite.
The numerical and experimental results show high agreement, which confirms the adequacy of the developed numerical models of composite structures.
A series of assumptions of new modified couple stress theory have been used in models of composite laminated micro-plates to simplify formulas in engineering mechanics.
The advanced models of composite involving up to several hundred inclusions and providing an accurate account for the microstructure statistics and fiber fiber interactions can be considered in this way.
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Models of composites with curvilinear rhombic inclusions and thin interfaces on phase boundaries are constructed with the help of non-smooth argument substitution and asymptotically equivalent functions.
It mainly focuses on the morphology features and volume fraction of fillers, which is related to the thermal properties and analytical models of composites.
The next special generation of such software which combines complex geometrical design facilities, micro-models of composite structures and FE analysis, and tools for additive technologies has to be developed.
The effect of matrix cracks is included in an analytical model of composite box-beam.
Firstly, an effective permittivity model of composite with interfacial shell is established.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com