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This is attributed to the viscoelastic response of the material.
As before, the steady-state cyclic response of the material is predicted well.
Consequently, the mechanical response of the material diminishes linearly until fracture.
These methodologies rely on models describing the elastoplastic response of the material under cycling.
The mechanical response of the material against both sinusoidal and oscillatory stress forces has been measured.
Simulations require the knowledge of the true stress strain response of the material until fracture initiation.
The work so far focuses on modeling the response of the material to fatigue damage only.
It is mainly attributed to the response of the material properties to freeze-thaw cycles and aggregate pore structure.
Excimer laser apart from giving rise to grain growth has been known to alter magnetic response of the material momentarily.
The creep response of the material is governed by Norton's law.
The simulation results show the effect of the microstructures on the fracture response of the material.
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