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Tensile properties of the nylon 46/EVOH blends were measured using a tensile tester.
Two properties of jet fuel blends were measured in this study, i.e., viscosity ((y_{1})) and freeze point ((y_{2})), as functions of the i:n mass ratio and carbon number distribution.
Viscosities of the blends were measured to investigate the transport behaviour of triiodide ions used in Grätzel-type dye-sensitized solar cells.
The elongation at break, ϵb, of PP HBP and PP MAH compatibilised PP/PA6 blends were measured as a function of compatibiliser concentration.
The mechanical properties of the oriented iPS/PPO blends were measured not only in the stretching direction but also perpendicular to the stretching direction.
The melt-flow index values for these blends were measured and have been correlated with rheometer data to develop a master curve for different blend compositions.
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The toughness of PP/EPDM blends was measured over a wide range of temperature (25 132°C) and composition 0 26 wt% EPDM).
The impact strength of the blends was measured in three fracture directions, namely, along the shear flow direction, perpendicular to and oblique (45°) with the flow direction.
The crystallization rate of PVF2 in the blends was measured by d.s.c. in the endothermic way and has been explained by the modified Lauritzen-Hoffman (L-H) growth rate theory applicable to the blends.
The viscosities of the five polymers (PS, PMMA, PC, HDPE, and PP) chosen for melt blending were measured over a wide range of temperatures at shear rates ranging from 0.001 to 1000 s−1.
The extent of transesterification reaction, intrinsic viscosity, weight-average molecular weight and hydrodynamic radius of poly ethylene 2,6-naphthalate) (PEN /poly ethylene terephthalate) (PET) (50/50, w/w) blend were measured as a function of reaction time at 280°C.
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