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Nanofilled composite had lower values of height parameters than nanohybrid composites, due to its composition.
Structural buckling of polymer matrix composites due to reduced stiffness from fire damage.
These composites, due to their poor weldability, however, have very limited applications.
Recent AFOs are often made of laminated composites due to their high stiffness and low density.
Moreover, elastic response exceeds viscous response in the composites due to the formation of crosslinking structures.
Carbon nanotubes are attractive as additives in fiber-reinforced composites due to their high aspect ratio, strength and electrical conductivity.
PP-hemp composites exhibit higher absorbed energies (up to 40%) than PP-glass composites due to higher strain at break.
Mullins effect is observed in both neat XNBR and composites due to the presence of ionic clusters.
XRD analysis of the scaffolds shows the increase of crystallinity in the composites due to incorporation of nHAp and ADA.
However, it is difficult to prepare highly translucent composites due to the light scattering that occurs in multiphase ceramics.
The well dispersion of hybrid fillers enhanced the mechanical properties of the composites due to the particle reinforcement.
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