The simulation of the stretch forming of A5182-O aluminum alloy sheet with a spherical punch is performed using the crystal plasticity (CP) finite element method based on the mathematical homogenization theory. In the simulation, the CP constitutive equations and their parameters calibrated by the numerical and experimental biaxial tensile tests with a cruciform specimen are used. The results demonstrate that the variation of the sheet thickness distribution simulated show a relatively good agreement with the experimental results.status: publishe
A rate-dependent crystal plasticity constitutive model together with Marciniak-Kuczynski(M-K) approa...
International audienceIn this work, an in-plane biaxial tensile test of cruciform specimen is perfor...
Generally, commercial finite element method (FEM) software was used for sheet forming simulation. In...
The simulation of the stretch forming of A5182-O aluminum alloy sheet with a spherical punch is perf...
The formability of a material is an important consideration in the design of manufacturing processes...
Polycrystal plasticity theory provides a foundation for the introduction of anisotropy into finite e...
With advances in computer hardware and software, it is possible to model material processing, produc...
AbstractBiaxial tensile tests of 6000 series aluminum alloy sheet with different density cube textur...
International audienceAn in-plane biaxial tensile test with a dedicated cruciform specimen is perfor...
International audienceSheet metal forming represents a class of important processes widely used in t...
Publisher Copyright: © 2022 The Author(s). Published by Trans Tech Publications Ltd, Switzerland.The...
Cylindrical smooth and notched AA6060 samples were tested in tension. The material was either cast a...
The modeling and simulation of metal forming processes is typically based on experimental data. Unfo...
The crystal plasticity finite element method (CP-FEM) is used to investigate the influence of micros...
International audienceThis paper proposed an approach for evaluating the sheet formability by combin...
A rate-dependent crystal plasticity constitutive model together with Marciniak-Kuczynski(M-K) approa...
International audienceIn this work, an in-plane biaxial tensile test of cruciform specimen is perfor...
Generally, commercial finite element method (FEM) software was used for sheet forming simulation. In...
The simulation of the stretch forming of A5182-O aluminum alloy sheet with a spherical punch is perf...
The formability of a material is an important consideration in the design of manufacturing processes...
Polycrystal plasticity theory provides a foundation for the introduction of anisotropy into finite e...
With advances in computer hardware and software, it is possible to model material processing, produc...
AbstractBiaxial tensile tests of 6000 series aluminum alloy sheet with different density cube textur...
International audienceAn in-plane biaxial tensile test with a dedicated cruciform specimen is perfor...
International audienceSheet metal forming represents a class of important processes widely used in t...
Publisher Copyright: © 2022 The Author(s). Published by Trans Tech Publications Ltd, Switzerland.The...
Cylindrical smooth and notched AA6060 samples were tested in tension. The material was either cast a...
The modeling and simulation of metal forming processes is typically based on experimental data. Unfo...
The crystal plasticity finite element method (CP-FEM) is used to investigate the influence of micros...
International audienceThis paper proposed an approach for evaluating the sheet formability by combin...
A rate-dependent crystal plasticity constitutive model together with Marciniak-Kuczynski(M-K) approa...
International audienceIn this work, an in-plane biaxial tensile test of cruciform specimen is perfor...
Generally, commercial finite element method (FEM) software was used for sheet forming simulation. In...