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The resultant composite, featuring three-dimensional reinforcement architecture, possesses triple toughening mechanisms at three different scales, thus yielding a synergistic effect.
The obtained graphene/metal oxide hybrid is a continuous, electrically conductive three-dimensional (3D) composite featuring a hierarchical meso nano porous structure.
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The composite featured a honeycomb structure.
The ternary composite featured high stability, with an increase of 5% in capacitance after a thousand cycles.
Using the selected composite features discussed above, Figure 5 shows that the 1-NN, with 95.20% sensitivity (SEN) & 88.60% specificity (SPE), achieved the best overall performance.
The UCNFs@3DG composite features a high activity approaching the commercial Pt/C catalyst in the ORR, probably due to synergic effects of the catalytically active UCNFs and the conductive 3DG network.
For comparison purpose, the scattered plots of shape features produced by the well-known methods like (i) the Fourier descriptor (FD) [22], (ii) the generic Fourier descriptor (GFD) [23], and (iii) the projection-based Radon composite features (RCF) [24] are also included in this figure.
It incorporates various basic features as well as extended composite features through a sequence window and a structure window.
Engineered Cementitious Composite (ECC) is a family of high performance fiber reinforced cementitious composites featuring strain-hardening behavior and high tensile ductility (with tensile strain capacity of 3 5%).
The pulsed gas dynamic spraying process was used for depositing zinc coatings on composites featuring a thin layer of copper particles co-cured into the laminate.
However, for laminated composites featuring very complex and irregular geometries, a calculational efficient approach utilizing stacked, multilayered shell elements seems to be more promising.
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CEO of Professional Science Editing for Scientists @ prosciediting.com