Martensite volume fraction, composition and grain size are the known primary factors controlling the mechanical behavior of ferrite-martensite dual-phase steels. Recently, excellent performances of dual-phase steels with a fibrous microstructure have been reported. However, the precise role of martensite morphology and orientation has not been thoroughly elucidated yet. This study develops a two-scale micromechanical modeling strategy in order to investigate the effect of particle morphology and orientation on the elastoplastic behavior of dual-phase steels. Finite element simulations are carried out on 3D periodic unit cells, each having a given orientation and volume fraction of spheroidal particles. The overall response is obtained by av...
Dual phase steels are well suited to the automotive application. Their microstru...
Micromechanical-based finite element simulations were carried out to investigate the transient plast...
The intent of this work is to numerically investigate the effect of second phase morphology on damag...
Dual-phase steels have long been used in the automotive industry for their excellent mechanical prop...
Dual-phase steels have long been used in the automotive industry for their excellent mechanical prop...
Dual-phase steels exhibit a moderate plastic anisotropy as a result of the underlying microstructure...
International audienceModel dual-phase microstructures were developed to decouple the effect of mart...
Dual-phase (DP) steels consisting of a ferrite matrix with dispersed martensite particles have attra...
This study analyses the effect of martensite grain size and its volume fraction in dual-phase (DP) s...
1st International Workshop on Plasticity, Damage and Fracture of Engineering Materials, IWPDF (2019 ...
The effects of microstructure parameters of dual-phase steels on tensile high strain dynamic deforma...
The similar crystal structures of martensite (BCT) and ferrite (BCC) cause difficulty in distinguish...
This paper focuses on the formability of Dual Phase (DP) steels and compares DP steels of different ...
Strong and ductile dual-phase (DP) steels are an important class of advanced high strength steels th...
In the recent years, dual phase steel sheets have been used extensively in automotive industry in or...
Dual phase steels are well suited to the automotive application. Their microstru...
Micromechanical-based finite element simulations were carried out to investigate the transient plast...
The intent of this work is to numerically investigate the effect of second phase morphology on damag...
Dual-phase steels have long been used in the automotive industry for their excellent mechanical prop...
Dual-phase steels have long been used in the automotive industry for their excellent mechanical prop...
Dual-phase steels exhibit a moderate plastic anisotropy as a result of the underlying microstructure...
International audienceModel dual-phase microstructures were developed to decouple the effect of mart...
Dual-phase (DP) steels consisting of a ferrite matrix with dispersed martensite particles have attra...
This study analyses the effect of martensite grain size and its volume fraction in dual-phase (DP) s...
1st International Workshop on Plasticity, Damage and Fracture of Engineering Materials, IWPDF (2019 ...
The effects of microstructure parameters of dual-phase steels on tensile high strain dynamic deforma...
The similar crystal structures of martensite (BCT) and ferrite (BCC) cause difficulty in distinguish...
This paper focuses on the formability of Dual Phase (DP) steels and compares DP steels of different ...
Strong and ductile dual-phase (DP) steels are an important class of advanced high strength steels th...
In the recent years, dual phase steel sheets have been used extensively in automotive industry in or...
Dual phase steels are well suited to the automotive application. Their microstru...
Micromechanical-based finite element simulations were carried out to investigate the transient plast...
The intent of this work is to numerically investigate the effect of second phase morphology on damag...