In this study, the effect of austenite grain size on acicular ferrite (AF) nucleation in low-carbon steel containing 13 ppm Mg is determined. The average austenite grain size was calculated using OM Leica software. Results show that the predicted and experimental values of austenite grain size are extremely close, with a deviation of less than 20 µm. AF formation is difficult to induce by either excessively small and large austenite grain sizes; that is, an optimal austenite grain size is required to promote AF nucleation probability. The austenite grain size of 164 µm revealed the highest capacity to induce AF formation. The effects of the maximum distance of carbon diffusion and austenite grain size on the microstructure of Mg-c...
Factors affecting the inclusion potency for acicular ferrite nucleation in high-strength weld metals...
The influence of plastic strain on the shape, size and crystallographic orientation of ferrite (α) g...
The present work deals with grain refinement and austenite formation in a plain C-Mn steel with 0.17...
Inclusion-induced acicular ferrite (AF) nucleation has been used for microstructure refinement in st...
The beneficial effect of grain refinement consisting in facilitating the nucleation of intragranular...
Prior austenite grain size dependence of the low temperature impact toughness has been addressed in ...
The influence of Al, Mn and rare earth (RE) on microstructure of C–Mn steel was investigated. The ca...
The alloys of Ti and Mg are added in molten carbon structural steel in sequence to reveal their infl...
In this study, the effects of the addition of Mg to the grain growth of austenite and the magnesium-...
The simulation welding thermal cycle technique was employed to generate different sizes of prior aus...
This study describes selected results of an extensive characterisation of the influence of the reduc...
In-situ observation of the transformation behavior of acicular ferrite in high-strength low-alloy st...
There is sufficient experimental evidence to propose that the formation kinetics of athermal martens...
The pinning effect of cerium inclusions in the austenite grain growth of SS400 steel at 1300 °C is i...
The transformation of the austenite to the martensite provides the transformation-induced plasticity...
Factors affecting the inclusion potency for acicular ferrite nucleation in high-strength weld metals...
The influence of plastic strain on the shape, size and crystallographic orientation of ferrite (α) g...
The present work deals with grain refinement and austenite formation in a plain C-Mn steel with 0.17...
Inclusion-induced acicular ferrite (AF) nucleation has been used for microstructure refinement in st...
The beneficial effect of grain refinement consisting in facilitating the nucleation of intragranular...
Prior austenite grain size dependence of the low temperature impact toughness has been addressed in ...
The influence of Al, Mn and rare earth (RE) on microstructure of C–Mn steel was investigated. The ca...
The alloys of Ti and Mg are added in molten carbon structural steel in sequence to reveal their infl...
In this study, the effects of the addition of Mg to the grain growth of austenite and the magnesium-...
The simulation welding thermal cycle technique was employed to generate different sizes of prior aus...
This study describes selected results of an extensive characterisation of the influence of the reduc...
In-situ observation of the transformation behavior of acicular ferrite in high-strength low-alloy st...
There is sufficient experimental evidence to propose that the formation kinetics of athermal martens...
The pinning effect of cerium inclusions in the austenite grain growth of SS400 steel at 1300 °C is i...
The transformation of the austenite to the martensite provides the transformation-induced plasticity...
Factors affecting the inclusion potency for acicular ferrite nucleation in high-strength weld metals...
The influence of plastic strain on the shape, size and crystallographic orientation of ferrite (α) g...
The present work deals with grain refinement and austenite formation in a plain C-Mn steel with 0.17...