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The Monte Carlo method is employed to obtain expected values and standard deviations of the rupture load.
A parametric study is conducted to validate the performance of these composite configurations with fatigue loads of 60%and80%0% of the rupture load over 100 cycles.
It is shown that the skin rupture load limits the achievable core shear load, and that core shear cracking can be prevented by selecting a core thickness above a certain threshold value.
Consequently, the rupture load of the stainless strip is reduced.
Firmness of the fruit samples was defined as the rupture load of the force/deformation curve and expressed in Newton (N).
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Table 3 Rupture loads and rupture modes observed in the specimens.
Table 3 presents the rupture modes observed and the rupture loads reached in each tested specimen.
Open image in new window Fig. 12 Comparison between the rupture loads obtained from the EBR and NSM samples.
In Table 3 it can be seen that the rupture loads associated to the EBR technique tend to increase with the bond length and in the cases where this doesn't occur the ruptures modes are mixed modes, i.e. parts of the bond length had adhesive failure within the SS-to-resin interface and other parts of the bond length ruptured within a superficial layer of concrete.
Unfortunately, the large within-individual variations in insertion area [ 6] and partial-rupture load [ 7], combined with the large between-subjects variability in multifidus activation timing and amplitude observed here, make it difficult to predict who is a risk for this type of injury.
Joints with large multifidus/capsular insertion areas, low partial-rupture loads and high levels of multifidus activation during the collision might be particularly prone to injury.
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