The evolution of deformation from plasticity to localization to damage is investigated in ferritic-pearlitic steel through nanometer-resolution microstructure-correlated SEM-DIC (µ-DIC) strain mapping, enabled through highly accurate microstructure-to-strain alignment. We reveal the key plasticity mechanisms in ferrite and pearlite as well as their evolution into localization and damage and their relation to the microstructural arrangement. Notably, two contrasting mechanisms were identified that control whether damage initiation in pearlite occurs and, through connection of localization hotspots in ferrite grains, potentially results in macroscale fracture: (i) cracking of pearlite bridges with relatively clean lamellar structure by brittl...
A ferritic-pearlitic steel was subjected to severe plastic deformation (SPD) through Equal Channel A...
The effect of prior strain on the microstructure and texture evolution was investigated in a near pe...
This manuscript presents the singular event of pearlite occurrence in commercially produced Hadfield...
The evolution of deformation from plasticity to localization to damage is investigated in ferritic-p...
This work unravels structure-property correlations at the micrometer length scale during recovery an...
The influence of the relative orientation of the ferrite crystallite lattice and the cementite lamel...
The deformation characteristics of ultrafine grained (UFG) iron, ultrafine lamellar (UFL) pearlite a...
By studying pearlitic steels using a scanning electron microscope it can be observed that pearlite i...
International audienceSynchrotron X-ray diffraction was applied to study the evolution of lattice st...
© 2016 Raab et al.In this paper, the regularities of structure formation in low-alloyed carbon steel...
High-pressure torsion of a pearlitic steel under a pressure of 7 GPa and for 1 rotation produces a h...
© 2017 Elsevier B.V. The strain localization and crack formation in ferritic-pearlitic ductile iron ...
This article presents the deformation behavior of high-strength pearlitic steel deformed by triaxial...
Ferritic–martensitic dual phase (DP) steels deform spatially in a highly heterogeneous manner, i.e. ...
A ferritic-pearlitic steel was subjected to severe plastic deformation (SPD) through Equal Channel A...
The effect of prior strain on the microstructure and texture evolution was investigated in a near pe...
This manuscript presents the singular event of pearlite occurrence in commercially produced Hadfield...
The evolution of deformation from plasticity to localization to damage is investigated in ferritic-p...
This work unravels structure-property correlations at the micrometer length scale during recovery an...
The influence of the relative orientation of the ferrite crystallite lattice and the cementite lamel...
The deformation characteristics of ultrafine grained (UFG) iron, ultrafine lamellar (UFL) pearlite a...
By studying pearlitic steels using a scanning electron microscope it can be observed that pearlite i...
International audienceSynchrotron X-ray diffraction was applied to study the evolution of lattice st...
© 2016 Raab et al.In this paper, the regularities of structure formation in low-alloyed carbon steel...
High-pressure torsion of a pearlitic steel under a pressure of 7 GPa and for 1 rotation produces a h...
© 2017 Elsevier B.V. The strain localization and crack formation in ferritic-pearlitic ductile iron ...
This article presents the deformation behavior of high-strength pearlitic steel deformed by triaxial...
Ferritic–martensitic dual phase (DP) steels deform spatially in a highly heterogeneous manner, i.e. ...
A ferritic-pearlitic steel was subjected to severe plastic deformation (SPD) through Equal Channel A...
The effect of prior strain on the microstructure and texture evolution was investigated in a near pe...
This manuscript presents the singular event of pearlite occurrence in commercially produced Hadfield...