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Post-yield material behaviour predictions from such analysis are found to be in very good agreement with the initial finite element material input.
In order to accurately predict depth of penetration (DOP) and cratering damage of UHPC cylinder targets, uniaxial compressive and four-point bending testing results are used to validate 3D finite element material model.
Three distinct approaches where adopted to derive the constitutive laws of the SFRSCC in tension that were used in finite element material nonlinear analysis to evaluate the reliability of these approaches in the prediction of the load carrying capacity of the prototype.
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However, none of these studies have provided a simple formula to determine the dilation parameter that is always required in the finite element (FE) material modelling of concrete.
Accurate order-reduced HFGMC models were then implemented within a special-purpose finite element user material subroutine and used to perform multiscale composite analyses.
The regression-based dimension variation model can significantly reduce computation time by eliminating the complicated, time-consuming finite element meshing, material parameter defining and evaluation solving process, which provides a quick design guide for composite products with reduced dimension variations.
The mechanical properties were predicted by employing finite element model of material microstructure, so as to design microstructure and prepare new ceramic materials.
Design of the HBS connection was performed through detailed finite element analysis and material testing.
Analysis is carried out by means of finite element simulation employing material data from typical constructional steel.
The results show that the calculated results are similar with the measured ones, which suggests that the reasonability of finite element identification for material parameters.
To verify adequacy of the obtained results of constitutive modeling, the derived tension-stiffening relationships were implemented into finite element simulation as material laws for tensile concrete.
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