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The method of polymer flooding optimization design is described in a formation of interest called Karamay conglomerate reservoir (Xinjiang Province, China).
The nanofiber mats were subsequently used to develop composites with polyamide 6 (PA6) via the composites – fabrication method of polymer melt infiltration lamination (PMIL).
Reversible Addition–Fragmentation Chain Transfer (RAFT) polymerization was used as the method of polymer synthesis as this technique allows the preparation of well-defined block copolymers with low polydispersity.
In the present research, a porous composite scaffold composed of HA scaffold and polycaprolactone (PCL) lining was fabricated by the method of polymer impregnating to produce HA scaffold coated with PCL lining.
Porous hydrophobic/hydrophilic composite membranes have been prepared in one casting step, using the traditional phase inversion method of polymer solutions containing a hydrophilic host polymer and a fluorinated surface modifying macromolecule.
Solvolysis is an efficient method of polymer waste valorisation, particularly for fibre-reinforced composites, allowing recovery of inorganic parts (fibres, charges, metals), whereas the matrix yields depolymerization products which may be recycled in useful raw materials for the chemical industry.
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A novel synthesis method of polymer-coated magnetic nanoparticles was developed.
Due to the importance of understanding the heat transfer process and metal temperature variation during the molding cycle for developing the above method of polymer-metal hybrid (PMH) formation, the thermal response of the metal surface was evaluated.
According to JIS A 1171 and KS F 2476 (Test Method of Polymer-Modified Mortar), the UPM was mixed with a mass ratio of 1 2 (the binder to fine aggregate), polymer-binder ratios (P/B: calculated on the basis of redispersible polymer powder) of 0, 1 and 2 %, and their flow values were constantly maintained at 170 ± 5 mm in the water-binder ratio range of 45.0 68.0%%.
Such folded structures are not treated adequately through traditional methods of polymer statistical mechanics.
This review presents recent new insights in the fabrication methods of polymer nanostructures from hard porous AAO templates, with emphasis on the study of polymer structure/property relationships on the nanometric length scale, stressing potential interests in relevant applications.
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