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The temperature of the final blend increased with fill level, time and acceleration.
The complex viscosities of the 80/20 (w/w) PTT/EPDM-g-MA blend increased with the amount of the organoclay increasing, which are proposed as the reason for the dispersed domain size (D) that becomes smaller at higher clay content.
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The polarity of the blends increased with decreasing crystallinity.
Gas permeability of the blends increased with the copolymer content.
The qu0 of cement-stabilized RAP/CR blends increased with an increasing CR replacement and an increasing cement content.
Domain size of the blends increased with increase in PEEKMOH8 in the blends.
The TGA results showed that the DTGmax temperature and thermal stability of the blends increased with increasing PVAc content.
Mechanical properties of the 50/50 (SPI/PCL) blends increased with increasing MDI concentrations.
The melt elasticity of PLA/PETG blends increased with increasing compatibilizer content.
The proton conductivity of the blends increased with triflic acid concentration and the temperature.
Strength of the SPI/PCL blends with 2 wt% MDI decreased, and elongation of the blends increased with increasing PCL concentration.
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CEO of Professional Science Editing for Scientists @ prosciediting.com