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And the filling behavior of the blend has been greatly improved in the micro-molding process compared with the original resin.
The phase separation behavior of the blend was investigated by scanning electron microscopy (SEM) and time resolved light scattering (TRLS).
Rheological analyses showed a correlation with the morphological analysis and the electrical conductive behavior of the blend composites.
In this study we correlate and distinguish the drying behavior of the blend films with respect to the drying behavior of its constituent components.
The overall behavior of the blend is a miscible system with weak non-specific interactions, and the apparent asymmetry in the Tg composition relationship has been analyzed with a detailed view of partially segregated PEO crystalline domains.
The coarsening behavior of the blend was characterized in terms of the time change of the maximum intensity Im, and the magnitude of the scattering vector qm, at which the intensity becomes maximum.
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DSC analysis and spectral-birefringence technique were used to understand the thermal and stress-induced crystallization behavior of the blends.
This may originate from that the rapid volatilization of CF solvent, leading to the aggregation behavior of the blending layer especially the aggregates of PC70BM.
Besides, the thermal history greatly influenced the phase behavior of the blends as the hydrogen bonding is sensitive to temperature.
The non-symmetric structural behavior of the blends over the whole composition range was found to influence the mechanical properties.
The morphology and dynamic mechanical behavior of the blends were studied using scanning electron microscopy (SEM) and dynamic mechanic thermal analysis (DMTA).
More suggestions(21)
behavior of the blending
behavior of the mixture
behavior of the admixture
behavior of the mixing
behavior of the mix
behavior of the mixtures
behavior of the equilibrium
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behavior of the trend
behavior of the inequality
behavior of the hitter
behavior of the cancer
behavior of the entity
behavior of the material
behavior of the network
behavior of the reflection
behavior of the larva
behavior of the function
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behavior of the system
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