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An existing micro-mechanical solution was employed to model the material behaviour of the interface element.
The nonlinearity in this problem is due to the material behaviour of the concrete.
The material behaviour of the pipe is described by the Kelvin viscoelastic model.
The nonlinear material behaviour of the concrete and the prestressing strands were also accounted for.
A phenomenological material model to represent the multiaxial material behaviour of shape memory alloys is proposed.
The interphase region significantly influences the overall material behaviour of fiber composites as experimental investigations show.
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The overall accuracy of the models are in question while considering unbound base materials, behaviour of hot-mix asphalt and dynamic moving loads applied by traffic.
The purpose of this experiment was to study the material behaviour for the purpose of designing a new product/structure.
Consequently, several cumulative fatigue-damage theories have been developed to enable investigators to extrapolate from cyclic test data a prediction of material behaviour under random stresses.
An efficient search for such materials requires detailed knowledge of material behaviour under irradiation, high temperatures and corrosive environments.
A detailed description of material behaviour was provided by Jeervipoolvarn et al. (2009a).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com