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The pseudo-first order kinetic equation well fitted the kinetics profiles obtained with all composites indicating that electrostatic interaction dominated the sorption process.
Scanning electron microscopy analysis indicated noticeably smaller wear debris size in the case of graphene/PTFE composites indicating that graphene additives are highly effective in regulating debris formation in PTFE leading to reduced wear.
No significant water uptake effect was detected on peat ash composites indicating that these materials could be used as a direct replacement for HDPE in applications where impact strength is not a critical factor.
No reaction products were detected in the composites, indicating that the MWCNTs in the composites maintained their structural integrity after sintering, and thus, because of their advantageous properties, could reinforce the titanium matrix.
The 5 wt.% Ag-coated Li4Ti5O12 has the largest lithium diffusion coefficient compared with that of Ag-free Li4Ti5O12 and 1, 3, and 7 wt.% Ag-coated Li4Ti5O12 composites, indicating that coating with Ag is an effective way to improve the electronic conductivity.
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Microstructural observations of strained composites indicated that deformation is achieved primarily by grain boundary sliding.
Electron microscopy analysis of the composites indicates that the nanoparticles are intercalated between graphene layers.
Structural investigation of the composites indicated that chemical interactions occurred between CHS and Tz after solid-state mechanochemical treatment.
The morphology of printed composites indicated that good interfacial adhesion was obtained by impregnation of MA/CNC mixture and curing at elevated temperature.
Obtained results from thickness and areal density of the hybrid composites indicate that both properties increase with the ballistic properties of the hybrid composites.
Further analysis on the tensile strength of the composites indicated that such improved mechanical properties may be attributed to the presence of coupling agent.
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CEO of Professional Science Editing for Scientists @ prosciediting.com