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Liang et al. (2013) investigated the tensile mechanical properties of PLLA/PCL/nano-CaCO3 composite and evaluated the effects of blend composition on their mechanical properties.
Thus, the properties of PCL PG composites could be tailored by controlling the phosphate glass blend composition.
Mechanical performance is mostly dependent on blend composition.
Huggins coefficients display generally nonlinear dependencies on blend composition.
The effect of the blend composition was also investigated.
We also examine the effect of the blend composition on carrier transport and photoresponse.
Wright, M., Lin, R., Tayebjee, M. J. Y. & Conibeer, G. Effect of blend composition on bulk heterojunction organic solar cells: a review.
The three independent variables, emulsifier blend composition, organic:aqueous phase ratio and polymer concentration, had a significant effect (p < 0.05) on emulsion CQAs, the emulsifier blend composition exerting prominent main and interaction effects.
The effects of initial dispersed domain size, blend composition, and interfacial tension on rheological behavior and morphology evolution were investigated.
Furthermore, the blend composition affected polymer crystallization and, in turn, the nano and macro-structural properties of the scaffolds.
Molecular coupling of the blends was little affected by the blend composition or the degree of transesterification.
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