Exact(31)
Stress-strain curves yield important information on materials behavior.
Both elastic-plastic materials behavior has been employed.
Classical constitutive models for elastic materials behavior are local and do not possess intrinsic length scales.
Taken by themselves, the simulations and experiments will greatly advance our understanding of materials behavior.
The obtained results showed significant influences of strain rate and water content on materials behavior.
The underlying deformation mechanisms were proposed to transform from bulk-like to small-volume materials behavior.
Similar(28)
It is often frequency dependent to model nonlinear material behavior.
Isotropic elastic material behavior was assumed for the soil foundation.
Otherwise, the material behavior is brittle in nature.
Bi-axial material behavior for the bi-directional excitation; Materials show degradation behavior.
The material behavior was simulated using finite element method.
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