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Moreover, the critical strain of εDIC was proposed.
The critical strain energy release rate was calculated.
Critical buckling strain is more vulnerable to defects than critical buckling force i.e., critical strain of defected SWCNT is about one-third of critical strain of pristine SWCNT.
Thus, there exist critical strain and critical strain rate beyond which further increases do not lead to increase in yield stress of the materials.
The critical strain increased with increasing strain rate.
Critical strain is defined as the strain when the stress reaches the peak value.
The critical strain for topological phase transition depends on the band gap of antimonene.
Defects have more severe effects on critical strain than critical force of nanotubes.
G' decreases after a certain critical strain, and G″ presents an overshoot phenomenon.
The prefactor, a, in Eq. (5), is an order of magnitude larger than the critical strain.
Open image in new window Fig. 6 DIF of the compressive critical strain of RAC.
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