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Molecular simulations of poly vinyl phenol)/poly vinyl methyl ether) (PVPh/PVME) blends were performed and their degree of miscibility evaluated as a preliminary step before orientation simulations.
Studies using blends were performed to develop a NIR calibration model based on the feed frame system dynamics to determine acetaminophen drug concentration variability during the die filling process.
High-temperature (1050 1200 K) pyrolysis studies of pure methylcyclohexane (MCH) and oxidation studies of pure MCH and MCH/toluene blends were performed in the Princeton Turbulent Flow Reactor.
The glass transition temperatures of the blends were performed using a DSC from DSC-4000 in a nitrogen atmosphere with temperature.
Molding of the albumin-based bioplastic blends were performed on a 24-ton bench-top press (Carver Model 3850, Wabash, IN, USA) with electrically heated and water-cooled platens.
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A completely thermal and mechanical characterization of the blends was performed, correlating the results with the observed morphology.
Fibre-spinning of the blends was performed on a capillary rheometer.
The screening amongst formulations (13 different blends) was performed preparing pellets and evaluating extrusion profiles and quality of the spheronised extrudates.
The synthesis of pectin/PVA/amylase blends was performed by varying the concentration of the cross-linking agent glutaraldehyde.
Blending is performed to achieve a consistent material.
A Poisson color blending is performed onto the stitched patches.
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