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In addition, the surface of the PPy/MWCNT composites appears to be smooth and uniform, and no agglomerations or irregular nanoparticles of polymer are found.
The effect of constant amplitude, regularly applied overloads on the energy release rate of [0/90]n graphite/epoxy composites appears to diminish as the structural integrity reduces over time, suggesting the effects of overloads is more severe during the initiation of delamination growth.
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The thermoplastic composites appear to be the right alternative to the materials currently used for vehicles.
Flax composites appear to show the same interface behavior as the usual synthetic fiber reinforcement.
Aluminum alloy and its composites appear to have a good future as a candidate material for engineering and structural components.
Although FRCM composites appear to be an effective strengthening technique for RC structures, limited work is available in the literature.
The DC conductivity of all the composites did not exceed 0.001 S m−1, hence all the composites appeared to be under the percolation threshold.
Polymer ceramic composites appear to be the most promising bone graft substitute since the natural bone itself is a composite of collagen and hydroxyapatite.
The effective properties, as well as the phase averages and fluctuations predicted for these strongly nonlinear composites appear to be consistent with deformation mechanisms involving shear bands.
The thermoplastic composites appear to be the right alternative to the materials currently used, replacing not only the non-structural parts, but also the structural components located in areas potentially subject to impacts.
Copper-based composites appear to be a promising material for engineering applications due to their excellent thermophysical properties coupled with better high temperature mechanical properties as compared to pure copper and copper alloys.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com