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For rendering, material modeling is the fundamental problem of understanding and simulating the interaction of light with materials.
Multi-scale material modeling is applied to investigate the effect of major design parameters of reinforcing agents in single-walled carbon nanotube (SWCNT) reinforced nanocomposites in impact loads.
Since multiscale material modeling is used, it is possible to study in more detail the stress strain evolution in the two phases during cycling.
The following equations were used to obtain tensile stress versus strain laws; the material modeling is schematically illustrated in Fig. 10.
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The material modeling was also based on this simplified model.
An elastic-perfectly plastic material modeling was adopted for the steel beams.
Assumptions of the material modeling are defined, so that the best calibration using the experimental data was achieved.
Comparison between tests and modelling simulations shows that the developed ageing concrete material model is working well.
A linear poroelastic material model is utilized.
A material model is proposed for ice.
A continuum material model is applied to the masonry panels.
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