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metals has been simulated numerically using a viscoplastic crystal plasticity model assuming different combinations of octahedral and non-octahedral slip systems for several grain-matrix interaction schemes.
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Texture evolution during ECAE was successfully predicted using a viscoplastic self-consistent crystal plasticity framework capturing the effect of the observed twinning mode on texture.
In this study, crystal plasticity simulations were carried out using a viscoplastic self-consistent model for a face-centered cubic model material processed via an extended range of processing routes and with two die angles (90° and 120°).
Finally, the textures were simulated using a viscoplastic polycrystal self-consistent (VPSC) model.
The predicted texture was computed using a viscoplastic self-consistent model and was compared with experimental results.
Stress strain responses of single and polycrystals of Hadfield steel were modeled using a viscoplastic self-consistent approach.
An attempt is made in an exploratory way to discover a new deep-drawing technology of sheet-metal forming by way of flexible-die forming (FDF) using a viscoplastic pressure-carrying medium (VPCM).
In this research, we analyze forming-limit strains of FCC and BCC materials using a viscoplastic self-consistent polycrystal model (VPSC) in conjunction with the Marciniak Kuczynski (MK) approach.
These can be avoided by using a viscoplastic regularization of the constitutive equations.
The effect on forming-limit diagrams (FLD) of an initial cube texture and its evolution was studied using the well-known M K approach in conjunction with a viscoplastic crystal plasticity model (VPSC).
Recently, Zhao and Tong (Zhao & Tong 2008) used a viscoplastic constitutive model to study the fundamental crack deformation behaviour for a nickel based superalloy at elevated temperature, focusing on the stress strain field near the crack tip.
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