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A sensitivity analysis of heap mechanical parameters was also conducted.
The influence of the major geometrical and mechanical parameters was studied by means of a parametric study.
On the basis of the laboratory results, the concrete compressive strength as a function of formwork and concrete mechanical parameters was obtained.
The influence of thermal damage on different relevant mechanical parameters was investigated, and a quantitative correlation analysis between these parameters was proposed.
The material damage concept under reverse loading, which correlates the material damage for micro-void nucleation to macro-scale mechanical parameters, was proposed in consideration of two aspects of the Bauschinger effect: (a) a mechanical aspect which influences deformation and stress/strain behaviors in steel structures, (b) a material damage aspect caused by dislocation behavior.
The decision to use axial compression to test mechanical parameters was based on the mode of failure of regenerate bone in clinical practice [6].
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Mechanical parameters are deduced from mechanical tests.
In Fig. 4d, the various simulated mechanical parameters are plotted as a function of N (filled circles).
Mechanical parameters are tuned to establish an efficient resonance system.
These physical and mechanical parameters were required in the derived model.
The determination of mechanical parameters are of significant interest for their optimum design.
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