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For the sake of compatibility with other programs and to model plastic characteristics, a concentrated plasticity model was also developed by IDARC.
The study was designed to examine the effects of model plastic derived compounds, bisphenol A (BPA) and dibutyl phthalate (DBP), on juxtacrine communication in adult rat testis, by evaluating the expression of Notch pathway components.
Through a numerical parametric study, the effect of confinement level on the Elasto-Plastic and Fracture (EPF) model (plastic strain and fracture parameter) is examined and used to develop equations for a constitutive model.
The proposed plastic dilation rate formulation is able to model plastic volumetric compaction caused by the use of very stiff confining devices, as well as the initial plastic compaction after the onset of localized cracking.
As an application of the PS method, we determined micron order residual stress distributions in a model plastic encapsulated silicon substrate for microelectronic devices and compared the stress data with those calculated using a two-dimensional finite element analysis of the device.
To model plastic hinge at the end of elements, inelastic force-based element with fiber-distributed plasticity was selected.
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By considering the obtained experimental results, the predictive performance of a constitutive model (plastic-damage multidirectional fixed smeared crack model) implemented in a FEM-based computer program, as well as the one from three analytical formulations for estimating shear resistance of the developed beams were assessed.
Styrene is a model plastics precursor with an established route for production in E. coli (McKenna and Nielsen, 2011).
Despite the inventive power of these ideas, the appeal of the cardboard models, plastic maquettes and obscurantist drawings that represent them at the Barbican is inevitably limited.
The fracture criterion models plastic damage as strain-induced void nucleation, triaxiality-governed void enlargement, Lode-controlled void torsion, and shear-restrained coalescence of voids.
Plastic response has been modeled by a J2 temperature dependent model, including plastic hardening and thermal softening.
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