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Effect of compatibilisation on the blends has been evaluated from the morphological parameters derived from scanning electron micrographs (SEM) of cryogenically fractured and extracted surfaces of the specimens.
The compatibilizing efficiency of the different types of the compatibilizer precursors towards the blends has been evaluated quantitatively by the values of the interfacial tension obtained.
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Finally, the static and dynamic mechanical properties of the blends have been evaluated.
The gel fraction, the mass swelling ratio and the mechanical properties of both the one-component hydrogels and the protein/polysaccharide blends have been evaluated.
BSFC and emissions (NOx, SO2 and CO) using three different load conditions (50%, 75% and 100%) using similar olive pomace methyl esters/diesel blends have been evaluated.
The effects of dynamic crosslinking on rheological, mechanical and dynamic mechanical properties of high density polyethylene (HDPE) and acrylonitrile butadiene rubber (NBR) blends have been evaluated with special reference to the effect of dosage of crosslinking agent.
The polymer blend poly vinyl alcohol)/poly acrylic acid) (PVA/PAA) has been evaluated as a coating on graphite electrodes.
Only one SWAps has been evaluated independently.
The optimum conditions for the synthesis of psyllium poly vinyl alcohol) (PVA)–poly acrylic acid) blended hydrogels have been evaluated and their characterization has been carried out by SEMs, FTIR and swelling studies.
The differences in the response of human Saos-2 osteoblasts to nanocomposites of poly vinyl alcohol) (PVA) and 1.5 wt.% graphene oxide (GO) prepared by covalent linking (PVA/GO-c) and simple blending (PVA/GO-m) have been evaluated through different biocompatibility parameters.
The effects of milling intensity, either the number of comilling cycles or blending time, and silica loading level have been evaluated.
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