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According to the principle of the output powder cumulative volume invariable in unit time, the real time powder allocation formulae are deduced.
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Finally, the processing and post-processing related challenges in terms of the suitable models for real time powder-binder interaction study, limitations in depowdering, heat treatment strategy, surface roughness are emphasized.
As needed for closed-loop control, new sensing technique has been developed for real time monitoring of powder level and powder bulk density.
However, real time monitoring of powder bulk density is still a challenging task because of different level of complexities.
Near infrared spectroscopic (NIRS) calibration models for real time prediction of powder density (tap, bulk and consolidated) were developed for a pharmaceutical formulation.
Therefore, real time monitoring of powder bulk density variability and its incorporation into the automatic control system so that its effect can be mitigated proactively and efficiently is highly desired.
The real time change proportion allocation technique of three metal powders, powder uniform mixing technique, and coaxial powder delivery technique are studied.
Additional diagnostics enabled measurements of electrical current, voltage, and spark and ignited powder emission in real time.
The ignition instant was identified from the powder's radiation measured in real time.
Spectra obtained in real time in a continuous manufacturing (CM) plant were compared to the spectra from the three approaches used to vary powder density.
(Real Time Economics) Funny.
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