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The resulting delamination threshold load is about 21% higher than the corresponding quasi-static threshold load.
This work shows also that the RCC-MR rules are valid below this threshold load level.
Force time histories have been used to determine the damage threshold load.
Moreover, these two control schemes are selected depending on the threshold load current.
The solution is also combined with an existing quasi-static delamination threshold load criterion.
The threshold load for dislocation nucleation and the dislocation emission angle are obtained in analytical form.
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The model predicts threshold loads, and the times required, for crack nucleation.
The threshold loading levels required for G and CF to achieve measurable conductivity in HDPE have been identified.
The predicted delamination threshold loads and velocities are in very good agreement with the finite element simulations.
An analytical approach is proposed to determine delamination threshold loads of fiber-reinforced laminated composite plates with arbitrary stacking sequences under transverse loading conditions.
It is estimated that the threshold loading levels at infinite fatigue life are 23%and37%7% of Pult, for the cases of R = −1 and R = 0, respectively.
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