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Exact(13)
For differential rotation (including contra-rotation) with the disc speed greater than the shaft, there is a significant decrease in discharge coefficient.
The effects of the disc speed, feed position, feed rate and vane angle on the spread pattern were investigated experimentally and compared to the DEM results.
The die disc speed does not affect wave powder behavior but affects significantly the mass hold-up inside the feed frame.
This work found that the paddle wheel speed can be increased up to 30% and the die disc speed decrease 10% without affecting NIR predictions.
For stationary shaft and discs, co-rotation of the shaft and discs and differential rotation with the disc speed less than the shaft (in the same rotational direction), the discharge coefficients are in reasonable agreement with these data.
Under these conditions (pH = 4; [H2O2]0 = 1500 mg/L; disc speed = 500 rpm; flowrate = 25 mL/s), AP was completely degraded in 120 min and regeneration of the disc allowed 10 cycles with no loss in efficiency.
Similar(47)
Different disc angles and disc speeds were considered for the study.
Further, relationships among porosity, normal load and disc speeds with respect to wear loss were derived by using the response surface methodology, and the wear mechanisms were discussed adequately.
The disc rotation speed and the vial rotation speed were equal to 250 and 500 rpm, respectively.
In fact, in the same kinetic conditions (Ωdisc is the disc rotation speed, ωvial is the vial rotation speed, Rdisc is the disc radii, rvial is the vial radii and rball is the ball radii), the injected shock power increases by increasing the ball number and weight, or by reducing the material weight.
Variables studied were disc rotation speed, groove depth (e) and physical properties of the solution.
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