AbstractDual Phase (DP) steels are Advanced High Strength (AHS) steels that have been widely used in the automotive industries. Generally, DP steels exhibit high strength as well as good formability. Their microstructures consist of hard martensitic islands embedded in soft ferritic matrix. Formability description of this steel grade is challenged, as its damage mechanism was very complex on the micro-scale. The aim of this work was to investigate deformation and fracture behavior of the DP steel grade 1000 by means of a microstructure based Finite Element modelling. Representative Volume Elements (RVEs) were applied to consider effects of various microstructure constituents and characteristics. Individual stress-strain curves were provided...
Abstract: The 3D representative volume element modelling concerning different microstructural featur...
In the recent years, dual phase steel sheets have been used extensively in automotive industry in or...
1st International Workshop on Plasticity, Damage and Fracture of Engineering Materials, IWPDF (2019 ...
Dual phase (DP) steels are advanced high strength steels that are being progressively used in the au...
Bending of dual-phase (DP) steels has introduced new issues concerning the analysis by finite elemen...
Strong and ductile dual-phase (DP) steels are an important class of advanced high strength steels th...
Due to the existence of constituents with strong distinction in mechanical properties, dual phase st...
Damage characterization and micromechanical modelling in dual-phase (DP) steels have recently drawn ...
Advanced high strength steel sheets are one of the higher strength advance material developed by the...
Weight minimization triggered the automotive industry to introduce new advanced high strength steels...
This study analyses the effect of martensite grain size and its volume fraction in dual-phase (DP) s...
AbstractThe current work aims at predicting of damage and failure in multiphase steels (Dual phase a...
The aim of this paper is to develop a micromechanical model to quantitatively upscale the damage ini...
This paper focuses on the application of a higher-order gradient-dependent plasticity–damage model f...
International audienceThis work provides an experimental analysis of the evolution of the microstruc...
Abstract: The 3D representative volume element modelling concerning different microstructural featur...
In the recent years, dual phase steel sheets have been used extensively in automotive industry in or...
1st International Workshop on Plasticity, Damage and Fracture of Engineering Materials, IWPDF (2019 ...
Dual phase (DP) steels are advanced high strength steels that are being progressively used in the au...
Bending of dual-phase (DP) steels has introduced new issues concerning the analysis by finite elemen...
Strong and ductile dual-phase (DP) steels are an important class of advanced high strength steels th...
Due to the existence of constituents with strong distinction in mechanical properties, dual phase st...
Damage characterization and micromechanical modelling in dual-phase (DP) steels have recently drawn ...
Advanced high strength steel sheets are one of the higher strength advance material developed by the...
Weight minimization triggered the automotive industry to introduce new advanced high strength steels...
This study analyses the effect of martensite grain size and its volume fraction in dual-phase (DP) s...
AbstractThe current work aims at predicting of damage and failure in multiphase steels (Dual phase a...
The aim of this paper is to develop a micromechanical model to quantitatively upscale the damage ini...
This paper focuses on the application of a higher-order gradient-dependent plasticity–damage model f...
International audienceThis work provides an experimental analysis of the evolution of the microstruc...
Abstract: The 3D representative volume element modelling concerning different microstructural featur...
In the recent years, dual phase steel sheets have been used extensively in automotive industry in or...
1st International Workshop on Plasticity, Damage and Fracture of Engineering Materials, IWPDF (2019 ...