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AA led to increase in CBFV of 25 32%.
Further increase of scanning speed led to increase of porosity but not significantly.
Its use led to increase in the unrecoverable creep compliance (Jnr) and reduction in percent recovery.
With regard to the physical properties, AL has led to increase in water absorption; however, SFG has deceased mentioned property.
Contact angle of wettability measurements of the films showed that plasma modification led to increase of hydrophilicity and surface energy.
The result of the both TEM and UV analyses indicate that increasing the aging time led to increase shell thickness.
Phase analysis results indicated that higher treatment temperatures led to increase carbon concentration in Ti(C, N) phase.
Further, addition of waste engine oil led to increase in phase angle values at any given frequency.
Using of TiO2 nanoparticles led to increase of Ni and Cr rejections and pure water flux at different PAN concentrations.
This also led to increase in the durability of the coating which was determined by noting the point of drastic increase in friction.
The result showed that the cubic-type films partially transformed to hexagonal structure by annealing over 900 °C, which led to increase in lattice parameter.
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