The Effect of Moisture on the Heckel and Energy Analysis of Hydroxypropylmethylcellulose 2208 (HPMC K4M)
- 1 November 1996
- journal article
- Published by Oxford University Press (OUP) in Journal of Pharmacy and Pharmacology
- Vol. 48 (11), 1122-1127
- https://doi.org/10.1111/j.2042-7158.1996.tb03906.x
Abstract
The influence of moisture content on the Heckel analysis, energy analysis and strain-rate sensivity of hydroxyproplymethylcellulose 2208 (HPMC K4M) has been evaluated. An increase in moisture content from 0 to 14.9% w/w decreased the mean yield pressure, probably due to a plasticizing effect of moisture which reduced the resistance of particles to deformation. For each moisture content (0, 2.2, 3.8, 5.9, 9.6 and 14.9% w/w), the initial relative density and the extrapolated density from the linear portion of the Heckel plot, tended to decrease with increasing compression speed. Minor changes were observed in the initial relative density due to changes in the moisture content. The strain-rate sensitivity increased from 21.6 to 50.7% as the moisture content increased from 0 to 14.9% w/w, indicating that the plasticity of HPMC increased with increase in moisture content, whereas increase in moisture content from 0 to 14.9% w/w decreased the plastic energy. Increase in compression force or speed of compaction increased both the plastic and elastic energies. An increase in moisture content from 0 to 5.9% w/w slightly reduced the elastic energy but above 5.9% moisture content the elastic energy was unaffected by the moisture content.Keywords
This publication has 7 references indexed in Scilit:
- The Influence of Moisture Content on the Consolidation Properties of Hydroxypropylmethylcellulose K4M (HPMC 2208)Journal of Pharmacy and Pharmacology, 1996
- The effect of particle size and viscosity grade on the compaction properties of hydroxypropylmethylcellulose 2208International Journal of Pharmaceutics, 1995
- The effect of moisture content on the energies involved in the compaction of ibuprofenInternational Journal of Pharmaceutics, 1995
- The effect of moisture on the properties of ibuprofen tabletsInternational Journal of Pharmaceutics, 1995
- Studies on direct compression of tablets XVII. Porosity—pressure curves for the characterization of volume reduction mechanisms in powder compressionPowder Technology, 1986
- The effect of punch velocity on the compaction of a variety of materialsJournal of Pharmacy and Pharmacology, 1985
- Particle slippage and rearrangement during compression of pharmaceutical powdersJournal of Pharmacy and Pharmacology, 1978