Local deformation and damage mechanisms have been studied for a commercial DP600 steel using in-situ tensile testing inside a scanning electron microscope (SEM) in combination with Digital Image Correlation (DIC). Different gauge geometries have been used to study damage evolution processes during tensile testing up to final failure. Strain distributions have been measured within the ferrite and martensite phases, together with the corresponding strain values for identified damage initiation mechanisms. According to the strain maps, large plastic deformation with strain values as large as 4.5 have been measured within the ferrite phase. Severe deformation localization and slip band formation were observed within the ferrite grains. The DIC ...
Ferritic–martensitic dual phase (DP) steels deform spatially in a highly heterogeneous manner, i.e. ...
In the present work, the microstructural damage behavior of two DP1000 steel test subjects through v...
Weight minimization triggered the automotive industry to introduce new advanced high strength steels...
Local deformation and damage mechanisms have been studied for a commercial DP600 steel using in-situ...
Weight reduction and fuel consumption play an important role on material selection in automotive ind...
This research is focused on the study of local deformation damage initiation and propagation in DP10...
Most of the advanced high strength steels possess multi-phase microstructures with an inherent mecha...
Most of the advanced high strength steels possess multi-phase microstructures with an inherent mecha...
Microstructure failure mechanisms and void nucleation in dual-phase (DP) steels during deformation h...
The evolution of local plastic deformation in a dual-phase (DP) steel has been studied using Digital...
Present study aims to investigate the effect of stress state and loading rates on the damage mechani...
Present study aims to investigate the effect of stress state and loading rates on the damage mechani...
Present study aims to investigate the effect of stress state and loading rates on the damage mechani...
Present study aims to investigate the effect of stress state and loading rates on the damage mechani...
Dual phase (DP) steels are advanced high strength steels that are being progressively used in the au...
Ferritic–martensitic dual phase (DP) steels deform spatially in a highly heterogeneous manner, i.e. ...
In the present work, the microstructural damage behavior of two DP1000 steel test subjects through v...
Weight minimization triggered the automotive industry to introduce new advanced high strength steels...
Local deformation and damage mechanisms have been studied for a commercial DP600 steel using in-situ...
Weight reduction and fuel consumption play an important role on material selection in automotive ind...
This research is focused on the study of local deformation damage initiation and propagation in DP10...
Most of the advanced high strength steels possess multi-phase microstructures with an inherent mecha...
Most of the advanced high strength steels possess multi-phase microstructures with an inherent mecha...
Microstructure failure mechanisms and void nucleation in dual-phase (DP) steels during deformation h...
The evolution of local plastic deformation in a dual-phase (DP) steel has been studied using Digital...
Present study aims to investigate the effect of stress state and loading rates on the damage mechani...
Present study aims to investigate the effect of stress state and loading rates on the damage mechani...
Present study aims to investigate the effect of stress state and loading rates on the damage mechani...
Present study aims to investigate the effect of stress state and loading rates on the damage mechani...
Dual phase (DP) steels are advanced high strength steels that are being progressively used in the au...
Ferritic–martensitic dual phase (DP) steels deform spatially in a highly heterogeneous manner, i.e. ...
In the present work, the microstructural damage behavior of two DP1000 steel test subjects through v...
Weight minimization triggered the automotive industry to introduce new advanced high strength steels...