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A very dense matrix is achieved by optimizing the granular packing of these powders.
Scanning electron micrographs (SEM's) indicate that a good bond between the kenaf fibers and the surrounding matrix is achieved.
Hierarchical architecture consisting of two-dimensional graphene and one-dimensional SiC nanowire in ceramic matrix is achieved owing to the heterogeneous nucleation of SiC nanowires promoted by graphene at lower temperature.
By reducing carbon concentration below 0.02%, a dispersion of nano-size MX nitrides of vanadium and niobium along boundaries as well as in the matrix is achieved in 9Cr 3W 3Co VNb steel with 0.05% nitrogen.
The new theory provides a thorough accounting for the role of graph theory in structural synthesis, and a fundamental understanding of the relationship between a given structural element and its mapping matrix is achieved.
Functionalization of graphene and its subsequent grafting have been verified through spectroscopic measurements like NMR, FTIR and UV visible spectroscopy and the uniform dispersion of graphene sheet in polyurethane matrix is achieved.
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Toughening of PBT matrix was achieved by this method.
Moreover, morphological studies by scanning electron microscopy confirmed that better adhesion between the uniaxial fabric and the matrix was achieved.
Moreover, morphological studies by scanning electron microscopy (SEM) demonstrated that better adhesion between the fiber and the matrix was achieved.
Exfoliation of MMT in polystyrene matrix was achieved as revealed by X-ray diffraction (XRD) and transmission electron microscopy (TEM).
Synergistic toughening effect of PES and PA on epoxy matrix was achieved due to semi-IPN structure of PES toughened matrix and uniform dispersion of PA microparticles.
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