Atom-probe tomography (APT) and synchrotron X-ray diffraction (XRD) were combined to study the carbon supersaturation of ferrite for two pearlitic steel-wire compositions, eutectoid and hypereutectoid. The samples were cold-drawn at different strains up to true drawing strains for the eutectoid steel and the hypereutectoid steel, respectively. The wire diameters range from 1.7 mm down to 0.058 mm for the eutectoid steel and from 0.54 mm down to 0.02 mm for the hypereutectoid steel. The findings reveal that cold-drawing of pearlitic steel wires leads to a carbon-supersaturated ferrite causing a spontaneous tetragonal distortion of the ferrite unit cell through a strain-induced deformation driven martensitic transformation. We fi nd that the ...
The microstructural evolution of and simultaneous dimensional changes in high-carbon SAE 52100 beari...
The patterns of structural transformations and the change in the mechanical properties of a metastab...
This study aims to reveal the atomic-scale effects of tempering on the complex substructures and str...
Atom-probe tomography (APT) and synchrotron X-ray diffraction (XRD) were combined to study the carbo...
High-resolution transmission electron microscopy and three-dimensional atom probe observations show ...
AbstractA multiscale simulation approach based on atomistic calculations and a discrete diffusion mo...
AbstractSteel wires, under severe cold drawing deformation, develop high strength. High carbon steel...
Cold-drawn pearlitic steel wires have attracted considerable interest because of their excellent com...
Electron diffraction and high-resolution transmission electron microscopy show the presence of auste...
The alloy design concepts of high performance steels, involve the knowledge on the stability of carb...
Wire drawing is an efficient material processing technique for metals. Pearlitic steel is recognized...
In a low-alloyed multi-phase transformation-induced plasticity steel, solute carbon content in polyg...
The evolution of deformation from plasticity to localization to damage is investigated in ferritic-p...
Pearlitic steels with their lamellar microstructure of thin Fe3C lamellae embedded in the α-Fe matri...
The nanostructure and the carbon distribution in a pearlitic steel processed by torsion under high p...
The microstructural evolution of and simultaneous dimensional changes in high-carbon SAE 52100 beari...
The patterns of structural transformations and the change in the mechanical properties of a metastab...
This study aims to reveal the atomic-scale effects of tempering on the complex substructures and str...
Atom-probe tomography (APT) and synchrotron X-ray diffraction (XRD) were combined to study the carbo...
High-resolution transmission electron microscopy and three-dimensional atom probe observations show ...
AbstractA multiscale simulation approach based on atomistic calculations and a discrete diffusion mo...
AbstractSteel wires, under severe cold drawing deformation, develop high strength. High carbon steel...
Cold-drawn pearlitic steel wires have attracted considerable interest because of their excellent com...
Electron diffraction and high-resolution transmission electron microscopy show the presence of auste...
The alloy design concepts of high performance steels, involve the knowledge on the stability of carb...
Wire drawing is an efficient material processing technique for metals. Pearlitic steel is recognized...
In a low-alloyed multi-phase transformation-induced plasticity steel, solute carbon content in polyg...
The evolution of deformation from plasticity to localization to damage is investigated in ferritic-p...
Pearlitic steels with their lamellar microstructure of thin Fe3C lamellae embedded in the α-Fe matri...
The nanostructure and the carbon distribution in a pearlitic steel processed by torsion under high p...
The microstructural evolution of and simultaneous dimensional changes in high-carbon SAE 52100 beari...
The patterns of structural transformations and the change in the mechanical properties of a metastab...
This study aims to reveal the atomic-scale effects of tempering on the complex substructures and str...