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In a first step, parameters lumping distance and material constants were estimated by matching a theoretical prediction to experimental data.
In a second step, the material constants were extracted from the lumped coefficients using a least square technique involving the tentative distances deduced from the borehole survey.
The Horstemeyer Gokhale void/crack nucleation model was modified to include the temperature dependence and material constants were determined based on the experimental data.
The behaviour of the material was then modelled using the Gurson Tvergaard Needleman (GTN) approach, and the material constants were identified via the gradient-based inverse method.
FEM simulation results on the mechanical behavior of an actuator, using the measured material constants, were found to be in good agreement with experimental data.
The procedure to characterize the mean stress/strain functions has been demonstrated and material constants were calibrated in the case of either stress, strain or energy approach, respectively.
Similar(52)
Material constants are determined using genetic-algorithm optimisation techniques.
An illustrative example with some special chosen material constants is further considered.
A series of material constants was also calculated and compared to lead-based ones.
Material constants are assumed to have a power law variation across the thickness.
Material constants are determined by experimental results with a data fitting approach that uses planar stress and strain fields.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com