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A synergism in mechanical properties of blends was found.
The degree of compatibilization in the blends was found to increase with SMA reactivity.
Miscibility behavior in the unreacted blends was found to correlate with trends in phase separation during the curing reaction.
However, the crystallinity of PET in the blends was found to increase on increasing the TLCP content.
The brittle to tough transition temperature of reactively compatibilised blends was found to be at 23 °C.
cooling run, only a lower glass transition temperature (Tg) corresponded to that of PHB phase in the blends was found in d.s.c.s.c
Similar(44)
Also, these zwitterionic blends were found to be cytocompatible.
The PC/PBT blends were found to be partially miscible.
The mechanical properties of blends were found to depend on the blend ratio.
Mechanical properties of the treated blends were found to improve significantly in comparison with those of untreated blends.
The performance parameters for different biofuel gasoline blends were found close to gasoline, and emission characteristics of the engine improved significantly.
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