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The maximum strain was found in the sheet material around the curved tool profile.
A 10-min hold time at maximum strain was also added to the strain controlled 0.5 Hz tests.
Failure criterion based on maximum strain was proposed to predict the peak blast pressure the HASP can bear.
The composites were designed to exhibit obvious residual resistance resulting from fiber fracture, by which maximum strain was memorized after loading unloading cycles.
Maximum strain was 30% of the original tissue length and thirty dynamic cycles were performed at a strain rate of 1%/s using a triangular waveform.
The increase in maximum strain was more than twice that of pure CDC-based EAPs (0.85% vs. 0.35% at an applied voltage of ±2 V).
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The maximum strain is given as ln(Ao/Af) ∼ 0.88 in the case of forward extrusion.
The resulting maximum strain is found from Hooke's law: 283.5 × 106 = 36.9 × 109 ε, where ε is the strain.
The stress releases with cyclic even if the maximum strain is constant.
When thermal changes are considered, marked changes in the maximum strain are observed.
A notable phenomenon found in this research is that the maximum strain is independent of the dimension of the beam.
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