DEM Modelling of Granule Rearrangement and Fracture Behaviours During a Closed-Die Compaction.

Abstract:

:The closed-die compaction behaviour of D-mannitol granules has been simulated by the discrete element method (DEM) to investigate the granule rearrangement and fracture behaviour during compaction which affects the compactibility of the tablet. The D-mannitol granules produced in a fluidized bed were modelled as agglomerates of primary particles connected by linear spring bonds. The validity of the model granule used in the DEM simulation was demonstrated by comparing to the experimental results of a uniaxial compression test. During uniaxial compression, the numerical results of the force-displacement curve corresponded reasonably well to the experimental data. The closed-die compaction of the modelled granules was carried out to investigate the rearrangement and fracture behaviours of the granule at different upper platen velocities. The forces during closed-die compaction calculated by DEM fluctuated in the low-pressure region due to the rearrangement of granules. A Heckel analysis showed that the force fluctuation occurred at the initial bending region of the Heckel plot, which represents the granule rearrangement and fracture. Furthermore, the upper platen velocity affected the trend of compaction forces, which can lead to compaction failure due to capping. These results could contribute to designing the appropriate granules during closed-die compaction.

journal_name

AAPS PharmSciTech

journal_title

AAPS PharmSciTech

authors

Furukawa R,Kadota K,Noguchi T,Shimosaka A,Shirakawa Y

doi

10.1208/s12249-017-0719-z

subject

Has Abstract

pub_date

2017-08-01 00:00:00

pages

2368-2377

issue

6

issn

1530-9932

pii

10.1208/s12249-017-0719-z

journal_volume

18

pub_type

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