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A bench-scale hopper system was assembled to monitor powder flow behaviour.
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A transmission NIR method was developed as an alternative technique to monitor continuous powder flow and quantify API in the powder stream.
Sample representation, interdependence between process parameters and their effects on powder flow behavior are critical factors for NIRS monitoring of continuous powder flow system.
Powder flow of mixtures is complex and not properly understood.
At the level of the powder scale, the primary concerns are powder flow and the ability of the bulk powder to be compacted into a dosage form.
In addition the effect of PSD upon a bulk powder is also broadly understood in terms of powder flow.
The experimental design confirms the influence of guillotine speed and particle size of the powder on powder flow.
Despite the availability of various powder flow testing techniques, the prediction of powder bridging has remained elusive.
Using the measured powder flow properties, Jenike's procedure was then followed to estimate and compare the critical hopper dimensions for mass flow of the three powders.
Glazed powder flows more readily than unglazed powder and is more moisture resistant.
In this paper, the air-powder flow is studied along with powder properties, nozzle geometries and shielding gas setting.
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