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From
Synergic Effect of Post-Fired Volume Shrinkage and Porosity of Bricks on Its Water Absorption Level during Service in Submerged State
C. I. Nwoye, I. E. Nwosu, S. O. Nwakpa
International Journal of Materials Lifetime
.
2014
, 1(1), 13-19
Fig
ure
1
.
(a) Bentonite powder (b) Olokoro clay (as mined) (c) Dried Olokoro clay (d) Dried Olokoro clay mixed with Bentonite
Full size figure and legend
Figure
2
.
Coefficient of determination between water absorption and volume shrinkage as obtained from experiment
Full size figure and legend
Figure
3
.
Coefficient of determination between water absorption and volume shrinkage as obtained from derived model
Full size figure and legend
Figure
4
.
Coefficient of determination between water absorption and apparent porosity as obtained from experiment
Full size figure and legend
Figure
5
.
Coefficient of determination between water absorption and apparent porosity as obtained from derived model
Full size figure and legend
Figure
6
.
Comparison of water absorption (relative to volume shrinkage)
as obtained from experiment and derived model
Full size figure and legend
Figure
7
.
Comparison of water absorptions (relative to apparent porosity)
as obtained from experiment and derived model
Full size figure and legend
Figure
8
.
3-D Effects comparison of water absorptions (relative to volume shrinkage) as obtained from experiment, derived model and regression model
Full size figure and legend
Figure
9
.
Comparison of water absorptions (relative to apparent porosity)
as obtained from experiment, derived model and regression model
Full size figure and legend
Figure
10
.
Variation of deviation with water absorption (relative to volume shrinkage)
Full size figure and legend
Figure
11
.
Variation of deviation with water absorption (relative to apparent porosity)
Full size figure and legend