Dual phase (DP) steels provide good strength and ductility properties. Nevertheless, their forming capability is limited due to the damage characteristics of their constituting microstructural phases and interfaces. In this work, a specific type of interface is analysed, i.e., prior austenite grain boundaries (PAGBs). In the literature, prior austenite grain boundary fracture has been reported as an important damage mechanism of DP-steels. The influence of the morphology of phase boundaries near the PAGB and the role of the martensite substructure in the vicinity of a PAGB on damage initiation is analysed. The experimentally observed preferred sites of crack nucleation along the PAGB are assessed and clarified. A finite strain rate dependen...
Martensite damage in Dual-Phase (DP) steel has been studied extensively, yet, the exact deformation ...
Multi-phase microstructures with high mechanical contrast phases are prone to microscopic damage mec...
Martensite/ferrite (M/F) interface damage largely controls failure of dual-phase (DP) steels. In ord...
Dual phase (DP) steels provide good strength and ductility properties. Nevertheless, their forming c...
Martensite/ferrite (M/F) interface damage plays a critical role in controlling failure of dual-phase...
Martensite/ferrite (M/F) interface damage plays a critical role in controlling failure of dual-phase...
Martensite/ferrite (M/F) interface damage is relevant to failure of many dual-phase (DP) steels, but...
This study analyses the effect of martensite grain size and its volume fraction in dual-phase (DP) s...
Dual-phase steels have long been used in the automotive industry for their excellent mechanical prop...
Dual-phase (DP) steels consisting of a ferrite matrix with dispersed martensite particles have attra...
The aim of this paper is to investigate the effects of microstructural parameters such as the volume...
Multi-phase microstructures with high mechanical contrast phases are prone to microscopic damage mec...
This study analyses the effect of martensite grain size and its volume fraction in dual-phase (DP) s...
The influence of transformation induced plasticity (TRIP) on materials mechanical behaviours, as wel...
Dual-phase steels have long been used in the automotive industry for their excellent mechanical prop...
Martensite damage in Dual-Phase (DP) steel has been studied extensively, yet, the exact deformation ...
Multi-phase microstructures with high mechanical contrast phases are prone to microscopic damage mec...
Martensite/ferrite (M/F) interface damage largely controls failure of dual-phase (DP) steels. In ord...
Dual phase (DP) steels provide good strength and ductility properties. Nevertheless, their forming c...
Martensite/ferrite (M/F) interface damage plays a critical role in controlling failure of dual-phase...
Martensite/ferrite (M/F) interface damage plays a critical role in controlling failure of dual-phase...
Martensite/ferrite (M/F) interface damage is relevant to failure of many dual-phase (DP) steels, but...
This study analyses the effect of martensite grain size and its volume fraction in dual-phase (DP) s...
Dual-phase steels have long been used in the automotive industry for their excellent mechanical prop...
Dual-phase (DP) steels consisting of a ferrite matrix with dispersed martensite particles have attra...
The aim of this paper is to investigate the effects of microstructural parameters such as the volume...
Multi-phase microstructures with high mechanical contrast phases are prone to microscopic damage mec...
This study analyses the effect of martensite grain size and its volume fraction in dual-phase (DP) s...
The influence of transformation induced plasticity (TRIP) on materials mechanical behaviours, as wel...
Dual-phase steels have long been used in the automotive industry for their excellent mechanical prop...
Martensite damage in Dual-Phase (DP) steel has been studied extensively, yet, the exact deformation ...
Multi-phase microstructures with high mechanical contrast phases are prone to microscopic damage mec...
Martensite/ferrite (M/F) interface damage largely controls failure of dual-phase (DP) steels. In ord...