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The semicrystalline morphology of the blends corresponding to the above four states was studied by means of small-angle X-ray scattering (SAXS).
During the nonisothermal crystallization, despite the cooling rates used two crystallization peak temperatures were found for PHB/PBSU 40/60 and 60/40 blends, corresponding to the crystallization of PHB and PBSU, respectively, whereas only one crystallization peak temperature was observed for PHB/PBSU 80/20 and 20/80 blends.
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However, thicker but shorter lamellae were observed for the LLDPE/LMW-PE blend, corresponding to a higher melting temperature; while thinner but longer lamellae were seen for the LLDPE/HMW-PE blend, corresponding to a lower melting temperature.
First in inter-race crosses performed in Experiment 1, we were unable to restore the propensity to mate by adding a source of female sex pheromone blend corresponding to the male's pheromone race (Table 1).
The microhardness values of the PA6/compatibilizer blends are lower than the corresponding additive values, while the microhardness of LDPE/compatibilizer blends corresponds to the additive values.
The blending coefficient corresponding to the {111}/{001} volume fraction ratio is selected as the design parameter.
These experiments allowed identifying the blend compositions corresponding to the beginning of partial continuity (cluster partial percolation) until total continuity of each phases.
Also, it was found that the temperature at which α-process of the homopolymers occurs, shows a slight change with blend composition, corresponding to a PEEK-rich and PES-rich phase.
The difference in miscibility behaviour of PPA and PVBZ towards SAN is also reflected in the heats of mixing (ΔHm) of the low-molecular-weight analogues of the respective blend components at compositions corresponding to øSAN = 0.92 in the blend.
The effect of methane CO2 blends with varying CO2 concentrations (corresponding to various biogas compositions) on combustion and emission characteristics were investigated numerically for a gas engine generator.
Seven blends were characterized: two of them corresponding to different a water/binder ratio geopolymer and the rest to 5, 10, 30 and 60% lime increments.
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