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In this study, porous scaffolds were prepared by adding hydroxyapatite (HA) nanoparticles as filler to the polymeric matrix of polycaprolactone (PCL) blends with two different molecular weight by using supercritical CO2 (ScCO2) foaming method.
This work mainly focused on the nucleation behavior in iPP/OBC (isotactic polypropylene/polyolefin block copolymers) blends with two distinct OBCs.
The PZEA concentrations in the blends with MDEA varied from 0 to 0.3kmolm−3 to see the effect of PZEA as an activator in the blends with two different total amine concentrations (1.0 and 2.0kmolm−3).
The phase-separation behavior of poly methyl methacrylate)/poly(α-methyl styrene-co-acrylonitrile) (PMMA/α-MSAN) blends with two different compositions was studied by time-resolved small angle light scattering (SALS) in the spinodal decomposition (SD) regime from 160 to 210 °C.
Herein, semimiscible systems were defined as blends with two glass-transition temperatures with a decrease in the Tg of PLLA induced by the second component.
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Crystallization behavior of the blends with three different HMW-iPP concentrations, i.e., 3, 6 and 9 wt%, were examined at temperatures higher than the blends' cloud points, in a time-resolved manner.
When a linear polyethylene is blended with two homogeneous copolymers, of different comonomer content, the resulting ternary phase diagram shows three distinct regions of liquid-liquid phase separation.
Asphalt binder specimens containing different concentrations of waste engine oil were fabricated with two types of binder, PG64-22 and PG76-22, and were blended with two types of laboratory aged binders to simulate the inclusion of reclaimed asphalt pavements (RAP).
Next, 10 vol% and 20 vol% of mixed butanols (MB) were blended with two different toluene/n-heptane/iso-octane (TPRF) fuel blends having octane ratings of RON 90/MON 81.7 and RON 84.6/MON 79.3.
A poly ether imide) (Ultem), which is an amorphous engineering thermoplastic, was melt blended with two liquid crystalline polymers: one based on p-hydroxybenzoic acid and 2-hydroxy-6-naphthoic acid (Vectra A900) and the other based on phenylhydroquinone, ethylphenylhydroquinone and terephthalic acid (Granlar).
Granular and belt-like Fe3O4 active materials were separately blended with two kinds of conductive agents (i.e., granular acetylene black and multi-walled carbon nanotube) as anodes in lithium-ion batteries (LIBs), respectively.
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