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Nevertheless, the straightening of the end hook of both types of fibres embedded in matrixes with 0.20 and 0.25 W/B ratios are similar.
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.
Overall, both types of fibres showed extremely similar pullout behaviour but difference in maximum pullout load and pullout work (Figs. 6, 7).
On the other hand, the improvement in total pullout work due to decrease in W/B ratio is relatively more significant than that in maximum pullout load for both types of fibres with LE (10 mm).
This can be explained by the slightly higher maximum pullout load was observed for both types of fibres in 0.20 W/B ratio series with an embedded length of 10 mm than those of 15 and 30 mm (Table 4).
It can be seen that the end hook of both types of fibres was somehow straightened, with those pulled out from the matrix with the W/B ratio of 0.15 being more straight compared with those in matrix with other W/B ratios.
Similar(49)
Short, coarse, brittle hairs, called kemp, may be intermingled with both types of fibre.
The influence of the addition of both types of fibre on energy absorption and tensile strength at high strain-rate was investigated, and the performance of the two types of fibre-reinforced mortar was compared.
From the experimental results of the both types of hooked fibres (Table 5), it can be observed that as the embedded length of fibre increases, the percentage of hook contribution in terms of total pullout work dramatically decreases.
These results indicate that irrespective of oxygen tension in the water both types of muscle fibres increased size, whereas CCH stimulated mitochondrial enzyme expression in high oxidative muscle fibres only after six weeks.
Results show that a decrease in W/B ratio has a significant effect on the bond-slip behaviour of both types of 3D fibres, especially when the W/B ratio was reduced from 0.25 to 0.15.
More suggestions(16)
both types of materials
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both types of tissues
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both forms of fibres
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both types of moviegoers
both types of samples
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