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The process variables were powder size, compaction pressure and initial powder compact thickness.
The increase of compaction pressure for the powder compacts promoted the densification and strengthening of stoneware.
This paper presents the hydrogen absorption and desorption behaviour of compacts of sodium alanate material prepared under different levels of compaction pressure.
Compaction pressure impacted tablet properties and dissolution.
Compaction pressure did not have any influence on moisture content.
Compaction pressure had negligible influences on all briquette properties.
There was negligible influence of compaction pressure on relaxed density.
Lower elastic recovery was observed with higher compaction pressure.
The green density of the pellet primarily depends on the compaction pressure.
Compaction pressure (50 150 MPa) used in this study had negligible influences on all briquette properties.
However, at high molasses ratio shatter index decreases with increase in compaction pressure.
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