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This is the first time that a surface treatment of ZEC has been employed hitherto by using the fibre laser (FL) radiation to observe the changes on and within the surface of the engineering ceramic; in particular, material removal, surface topography, chemical composition, changes in the surface hardness and distribution of the heat affected zone (HAZ).
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The mechanical properties of the fibres are shown to be related to the orientation parameter (〈sin2θ〉), and that by using the particular fibre spinning process (N-methylmorpholine N-oxide (NMMO /cellulose), a plateau is reached, beyond which no improvements can be made.
The fatigue life of UD composite with a brittle epoxide matrix is better than that with a ductile thermoplastic matrix by using the same fibre reinforcement.
This latter technique enabled a comparison to be made between the measured Young's modulus of the material and that predicted by micromechanical modelling, using the fibre length as determined by DLS.
After post-processing of the DTI white matter tracts of the brain were constructed using the Fibre Assignment by Continuous Tracking (FACT) algorithm [53].
After casting PDMS macro-scale fibres by using the obtained PMMA mold, a previously prepared micro-fibre adhesive is bonded to the macro-scale fibre substrate.
Rheological data have been analysed on the basis of fibre length (or aspect ratio) and/or distribution of the fibre lengths by using the rheological model proposed by Maron and Pierce.
Fibre tracts were based on the fibre assignment made by using the continuous tracking approach [ 25] to obtain a three-dimensional tract reconstruction.
Microscale damage modes of the composite material were determined by using the maximum-stress criterion for fibres and the MMF for a matrix.
The current demand for environmentally degradable composites has initiated the use of novel biodegradable copolyamides reinforced with E-glass fibres by using the hand lay-up technique.
Both orientation and distribution of the fibres have been evaluated with several experimental techniques, while various models have assessed the prediction of such fibre positioning by using the orientation factor.
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