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Modern marine hydrokinetic turbine blades are typically constructed from fiber reinforced polymer (FRP) composites, which provide superior strength- and stiffness-to-weight ratios and improved fatigue and corrosion resistance compared to traditional metallic alloys.
The model of the textile geometry serves as a base for meso-mechanical and permeability models for composites, which provide therefore simulation tools for analysis of composite processing and properties.
The uniquely designed structure of the composites, which provide an ultra-thin, flexible GNS shell to accommodate the changes in volume, introduces large efficient areas, good conductivity, three dimensional transportation paths for both Li ions and electrons, and contributes to its excellent performance.
In general, it is common to find organic-inorganic nanostructured composites which provide a rich source of new materials with promising technological applications [11].
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In dielectric measurements, the annealed SWNT/PS composites show higher electrical conductivity and a lower percolation threshold (less than 0.3 wt%) than the raw SWNT/PS composites, which provides further evidence of good dispersion of the annealed SWNT in PS.
This study has demonstrated that multi-scale CF and GN have an obvious synergetic reinforcing effect on the mechanical properties and thermal stabilities of thermoplastic composites, which provides an easy and effective way to design and improve the properties of composite materials.
All the enhanced results can be attributed to the introduction of crosslinked CNTs in the composite, which provide good electronic conductive pathways interconnecting Pb NO3 2 particles and maintain the whole nano-micro structure upon repeated cycles.
Chitosan was chosen as a natural polymer for dispersing CNTs to form a stable CNTs chitosan composite, which provided an interface containing amino groups for assembling [P2W18O62]6− (abbr. P2W18) by electrostatic interactions.
One is the development of a ceramic-polymer composite, which provides plasticity to the ceramics.
This is performed by utilizing micromechanically based dispersion relations for elastic wave propagating in the composite materials, which provide for a given wave length the corresponding phase velocity.
Concrete filled steel tubes (CFST) are composite structural elements which provide an economical and efficient alternative to conventional reinforced concrete and structural steel construction.
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