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Dynamic mechanical properties due to incorporation of carboxylated multiwalled carbon nanotubes into three-layer polymer structure, with high damping property, via in situ emulsion polymerization and also blending are studied in detail.
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Reactive melt blending of polyamide 6 (PA) and polysulfone (PSU) was carried out and the effect of the copolymer architecture on the pull-out of the copolymer in situ-formed during reactive blending was studied.
The reactive interfacial compatibilization between PLA and EBA-GMA and the crosslinking of EBA-GMA during blending was studied in detail.
The rheological properties of polyethylene terephthalate (PET)–styrene butadiene rubber (SBR) blends are studied in this work.
Solubility characteristics of bisphenol A polycarbonate, acrylonitrile-butadiene-styrene and their blends are studied in different solvents.
The effects of silica nanoparticles on the phase separation of poly (methyl methacrylate)/poly (styrene-co-acrylonitrile) (PMMA/SAN) blends are studied by the rheological method.
Phase structures of nylon-11/polyepichlorohydrin (Ny-11/PECH) blends are studied by nuclear magnetic resonance, differential scanning calorimetry and transmission electron microscopy techniques.
Finally, to ensure minimum values of BSFC under three levels of emissions reduction (10%, 20%and40%0%) optimum engine operating ranges, in terms of load rate and biodiesel blends, are studied.
Fire resistance of the nanocomposite blends was studied by firing of the various blended cement pastes at 300, 600, and 800 °C for 3 h.
The melting of PCL in the blends was studied.
The crystallization of PESeb in blends was studied.
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