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The mechanical behavior of large deformations was characterized with FE modeling via hyperelastic and linear viscoelastic models.
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In addition, the numerical predictions permit one conducting analysis the behavior of the bolt while targeting the development of large deformations.
These beta-shear topologies are highly efficient in resisting tensile force and thus control the mechanical behavior in the regime of large deformation at strain levels in excess of 150% (see Figs. 8B and 9B) [46].
Mechanics of large deformation; nonlinear hyperelastic material behavior.
Our models could therefore aid the design of CNT forests to have engineered mechanical properties, and guide further understanding of their behavior under large deformations.
Nonlinear viscoelastic behavior and large deformations are considered.
Behavior in extremely large deformations from 0.1 to 0.5 rad amplitudes was significantly different from the behavior in large deformations (to the 0.06 rad amplitude).
Unfortunately, their non-linear material behavior and large deformations make actual devices difficult to model.
Prediction of plate behavior in large deformation is one of the important problems in plate theories.
Many engineering ductile materials, such as metals, show inelastic behavior with corresponding large deformations.
Cosserat theory is a nonlinear advanced theory for simulation of plate behavior in very large deformation, but it is mathematically complicated.
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