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Surface morphology, elemental composition and thickness of interphase in unsized (ar) and CNT grafted composites is studied using scanning electron microscopy (SEM) and energy dispersive X-ray spectroscopy (EDS).
In addition, the behavior of individual material composites is studied to confirm how gradient designs based on different material compositions affect their material properties.
The comparison between rib and plain-knitted fabrics reinforced composites is studied and many differences are found.
The influence of the layer architecture on the fatigue properties of ultrafine-grained laminated metal composites is studied.
The surface morphology of these composites is studied with scanning electron micrograph (SEM).
The thermal expansion response of particle-filled polymer matrix composites is studied by micromechanical modeling.
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Phase composition and thermal stability of composites were studied by the differential thermogravimetry/differential thermal analysis.
Phase composition, microstructure, mechanical properties and fracture behavior of the resulting composites were studied.
The EM wave absorbing properties of these composites were studied.
Metal-polymer composites were studied as a key material for transistor construction in electronics industry[6].
The composites were studied by TEM, HRTEM, FTIR, Raman and XRD analyses.
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