In order to obtain reliable solutions for the initiation of localized instability in sheet metal forming, numerical procedures are developed for predicting forming limits using crystal plasticity. The Marciniak-Kuczynski (M-K) method is employed to calculate the initiation of the instability with rate-dependent elastic-crystal plasticity for cubic metals. The Nelder-Mead (N-M) direct search and Newton-Raphson (N-R) methods are used to solve the highly nonlinear equilibrium and associated compatibility equations under the M-K scheme. The N-M method eliminates the need of the first-order derivatives of the constitutive equations that may not be readily available for complex material models. The numerical results show that the calculation time...
Phenomenological methods are more diagnostic tools than a predictor, so multi-crystalline material a...
International audienceIn modern sheet metal forming processes, such as hydroforming and single point...
The present paper aims at a detailed analysis of sheet metal formability using the physically-based ...
A rate-dependent crystal plasticity constitutive model together with Marciniak-Kuczynski(M-K) approa...
An alternative method to predict forming limits for sheet metal forming is presented. Deformation in...
Forming Limit Diagrams (FLD) are used to design metal sheet processes and to choose appropriate mate...
International audienceThe prediction of plastic instability in sheet metals during forming processes...
The present investigation focuses on the development of a fast and robust numerical tool for the pre...
The objective of the present paper is to analyse the performance of Marciniak-Kuczinsky (MK) theory ...
International audienceThe present study focuses on the development of a relevant numerical tool for ...
Models for predicting the formability of sheet metals which take into account a single mode of strai...
ABSTRACT: The aim of this paper is to give an overview of the theoretical basis of the most signific...
In the present work, an efficient formulation for the prediction of forming-limit diagrams (FLDs) b...
In this thesis, finite element analyses based on a rate-dependent Taylor-type polycrystal model have...
This paper is concerned with the computation of forming limit diagrams (FLDs) using a rate-sensitive...
Phenomenological methods are more diagnostic tools than a predictor, so multi-crystalline material a...
International audienceIn modern sheet metal forming processes, such as hydroforming and single point...
The present paper aims at a detailed analysis of sheet metal formability using the physically-based ...
A rate-dependent crystal plasticity constitutive model together with Marciniak-Kuczynski(M-K) approa...
An alternative method to predict forming limits for sheet metal forming is presented. Deformation in...
Forming Limit Diagrams (FLD) are used to design metal sheet processes and to choose appropriate mate...
International audienceThe prediction of plastic instability in sheet metals during forming processes...
The present investigation focuses on the development of a fast and robust numerical tool for the pre...
The objective of the present paper is to analyse the performance of Marciniak-Kuczinsky (MK) theory ...
International audienceThe present study focuses on the development of a relevant numerical tool for ...
Models for predicting the formability of sheet metals which take into account a single mode of strai...
ABSTRACT: The aim of this paper is to give an overview of the theoretical basis of the most signific...
In the present work, an efficient formulation for the prediction of forming-limit diagrams (FLDs) b...
In this thesis, finite element analyses based on a rate-dependent Taylor-type polycrystal model have...
This paper is concerned with the computation of forming limit diagrams (FLDs) using a rate-sensitive...
Phenomenological methods are more diagnostic tools than a predictor, so multi-crystalline material a...
International audienceIn modern sheet metal forming processes, such as hydroforming and single point...
The present paper aims at a detailed analysis of sheet metal formability using the physically-based ...