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Furthermore, the optimization in maximizing pullout load and total pullout work is found to be more prominent for the 3D fibres with a larger diameter than for fibres with a smaller diameter.
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The pullout load is applied gradually and incrementally.
The load indicator displays the load values on a screen indicate the pullout load.
Overall, both types of fibres showed extremely similar pullout behaviour but difference in maximum pullout load and pullout work (Figs. 6, 7).
The pullout load is applied and controlled by equipping mechanical jack and load cell.
b Variation of failure pullout load with L/H ratio of helical pile.
This indicates that the pullout behaviour is drastically governed by the hook component and increasing in embedment length does not have significant contribution to the maximum pullout load.
It seems that the maximum pullout load significantly influenced by the plastic deformation of the fibre hook and increase the embedded length only enhances the frictional pullout stage.
It is apparent that the increase of embedment length has no great effect on the maximum pullout load but it relatively increases the total pullout work.
On the other hand, the pullout response of both types of fibres exhibit somewhat different slip behaviour before the second drop of the pullout load.
It can also be seen from the curves that decreasing W/B ratio from 0.25 to 0.15 remarkably enhances the maximum pullout load and pullout work.
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