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Forward and reverse rate sweep tests show a distinct hysteresis loop, which is a signature of thixotropic character.
The effects of pressure, temperature, flow rate (sweep ratio), membrane thickness and reactor diameter have been investigated in the present study.
The steady, shear viscosities of a synthetic mesophase pitch (Mitsubishi AR-HP) obtained from rate-sweep experiments at 0.1 10 s−1 exhibited shear-thinning (region I) and plateau responses (region II), but displayed a hysteresis during the decreasing rate sweep.
The rheological experiments (dynamic frequency sweep, steady rate sweep and stress relaxation tests) were performed to evaluate the effect of both system composition (kind of matrix and clay content) and extrusion rate on the flow behavior of the nanocomposites.
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Frequency and shear rate sweeps were performed at 20 and 37 °C, sweeping frequencies from 0.001 to 100 Hz at 1% strain and shear rates from 0.001 to 100 s–1 with 10 points/decade.
However, it can be seen that both suspensions followed the fluid power law with hysteresis between shear rate sweeps.
In oscillatory shear rate sweeps, the yield stress was defined as a 5% departure of the stress from the initial linearity on a stress strain plot.
Briefly, the samples were allowed to reach thermal equilibrium and then went through two cycles of shear rate sweeps ranging from 10 to 1,000 s−1.
The mean ECMO blood flow rates and sweep gas flow rates both before and during physical therapy sessions are detailed in Table 3.
The effect of feed flow rate and sweep flow rate on oxygen permeation has been evaluated.
Biochar yields of grapeseed and chestnut shell were decreased with the increasing temperature, heating rate and sweep gas flow rate.
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