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Predicted critical stress levels demonstrate reasonably good agreement with the experimentally determined critical resolved shear stresses.
The same size dependence of the critical resolved shear stress was observed for both orientations.
The critical resolved shear stresses are deduced below Ta from the Orowan law.
The texture predictions were improved by setting two critical resolved shear stress values for twinning.
The critical resolved shear stress for nucleation of parallel twins was measured as 50 MPa.
The critical resolved shear stresses (CRSSs) decrease steeply with increasing temperature for all deformation modes.
From the model, the critical resolved shear stress on the basal planes can also be estimated.
The elastoplastic model was used to predict evolution of internal stresses and critical resolved shear stresses.
Both the ordinary and <101] superlattice slips exhibit an anomalous increase in the critical resolved shear stress (CRSS).
The regions of dislocation multiplication are evaluated by comparing von Mises stress to critical resolved shear stress (CRSS).
The twinning critical resolved shear stress (CRSS) is a fundamental parameter for evaluating the strength-ductility properties of MHEAs.
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