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It is dependent on the permeability of the fibre architecture.
In-mould flow influences the UD fibre architecture in two ways.
An algorithm for creation of microstructures with clustered fibre architecture is presented.
In tensile test there is no evidence of an influence of fibre architecture.
The fibre architecture found is compared to a numerical microstructure generator using Monte Carlo simulations.
Therefore, the complex connection between manufacturing process and manifested fibre architecture can be determined and correlated.
The bridging law of the material is related to material composition and fibre architecture.
In vivo imaging of cardiac 3D fibre architecture is still a practical and methodological challenge.
The consequences of variations in fibre architecture on subsequent flow are demonstrated.
If during an injection process of a fibre architecture the fibre volume content is increased, e.g. by applying transverse load or by shearing the textile fibre architecture, the flow permeability is influenced.
Normally, an adhesive joint results in more uniform stress distribution, undamaged fibre architecture, and smooth surface contours.
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