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Graphical visualization using 4D spherical histograms for quick assessment of fibres orientation is also presented.
Three types of specimen were considered, which differ for the fibres orientation of the bonded surfaces.
The variation of the plates' mode shape and the effect of the fibres' orientation are investigated.
The method is applied by simulating finite plates and the effects of constraints, load conditions, damping, thickness and fibres orientation are investigated.
The influence of the fibres' orientation on the mechanical response of a polymer matrix composite subjected to tensile/compression tests is analysed in detail.
The mixing energy influence strongly the fibres/powder content, the porosity, the distribution and fibres orientation regarding the loading direction of composite.
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The main fibre orientation (uniform linearly transverse in each sheet) rotates throughout the bulk.
Fibre orientation is organized in sheets co-planar to the large surfaces of the bulk.
It can be stated that differential fibre orientation did not cause warpage, but the asymmetrical distribution of fibre orientation did.
Distributions of fibre orientation are characterised by micro-computed tomography.
Most injection moulded or extruded structures however, exhibit non-uniform fibre orientation states across the final parts, with a diverging variety of different local fibre orientation states.
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