Yield locus measurements and their analytical descriptions has been the bases for modeling metal processing. These analytical descriptions play a role in models to predict limit strains observed during determination of forming limit diagrams of flat metal stock as means to evaluate their fabrication performance. Some of these analytical descriptions use the isotropic or anisotropic plastic potentials that take into account the crystallographic texture of the material. The applicability of such potentials is validated by comparing their predictions to that of unidirectional tensile data. In the current work, this approach is reversed to examine whether the constitutive relations, which replicate the measured stress strain diagrams, can gener...
Two new yield functions for orthotropic sheet metals are proposed. The first one, called Yld2011-18p...
2024 aluminum tubes, heat treated to a T6 and T8 temper, were tested in combinations of tension-inte...
peer reviewedThe bi-axial experimental equipment [Flores, P., Rondia, E., Habraken, A.M., 2005a. Dev...
Yield locus measurements and their analytical descriptions has been the bases for modeling metal pro...
Yield function has various material parameters that describe how materials respond plastically...
The ohject of this investigation was to determine the yield strength, ultimate strength, ductility, ...
International audienceSheet metal forming represents a class of important processes widely used in t...
The predictability of strain distributions and the related prediction of hardening and failure plays...
The primary objectives of this study are to determine the i) evolution of subsequent yield surfaces ...
In this investigation, the material tested was a 75S-T6 aluminum alloy and the stresses were essenti...
ABSTRACT: For simulations of sheet metal forming processes a yield criterionwellsuitedtotheused mate...
The bi-axial experimental equipment [Flores, P., Rondia, E., Habraken, A.M., 2005a. Development of a...
The mechanical anisotropy of an AA1050 aluminium plate is studied by the use of five crystal plastic...
International audienceA phenomenological yield function is proposed to represent the plastic anisotr...
In metal forming, material points are often subject to complex loading paths even if the applied loa...
Two new yield functions for orthotropic sheet metals are proposed. The first one, called Yld2011-18p...
2024 aluminum tubes, heat treated to a T6 and T8 temper, were tested in combinations of tension-inte...
peer reviewedThe bi-axial experimental equipment [Flores, P., Rondia, E., Habraken, A.M., 2005a. Dev...
Yield locus measurements and their analytical descriptions has been the bases for modeling metal pro...
Yield function has various material parameters that describe how materials respond plastically...
The ohject of this investigation was to determine the yield strength, ultimate strength, ductility, ...
International audienceSheet metal forming represents a class of important processes widely used in t...
The predictability of strain distributions and the related prediction of hardening and failure plays...
The primary objectives of this study are to determine the i) evolution of subsequent yield surfaces ...
In this investigation, the material tested was a 75S-T6 aluminum alloy and the stresses were essenti...
ABSTRACT: For simulations of sheet metal forming processes a yield criterionwellsuitedtotheused mate...
The bi-axial experimental equipment [Flores, P., Rondia, E., Habraken, A.M., 2005a. Development of a...
The mechanical anisotropy of an AA1050 aluminium plate is studied by the use of five crystal plastic...
International audienceA phenomenological yield function is proposed to represent the plastic anisotr...
In metal forming, material points are often subject to complex loading paths even if the applied loa...
Two new yield functions for orthotropic sheet metals are proposed. The first one, called Yld2011-18p...
2024 aluminum tubes, heat treated to a T6 and T8 temper, were tested in combinations of tension-inte...
peer reviewedThe bi-axial experimental equipment [Flores, P., Rondia, E., Habraken, A.M., 2005a. Dev...