The present study reveals the microstructural evolution and corresponding mechanisms occurring during different stages of quenching and partitioning (Q&P) conducted on 0.6C-1.5Si steel using in-situ High Energy X-Ray Diffraction (HEXRD) and high-resolution dilatometry methods. The results support that the symmetry of ferrite is not cubic when first formed since it is fully supersaturated with carbon at the early stages of partitioning. Moreover, by increasing partitioning temperature, the dominant carbon source for austenite enrichment changes from ongoing bainitic ferrite transformation during the partitioning stage to initial martensite formed in the quenching stage. At low partitioning temperatures, a bimodal distribution of low- and hig...
International audienceUsing in situ high energy X-ray diffraction study of austenite formation in hy...
Abstract Phase transformation in low alloyed Fe-C steels during quenching and partitioning (Q&P)...
The effect of temperature (350 ◦C < M < 450 ◦C) on the partitioning mechanisms and the final microst...
The present study reveals the microstructural evolution and corresponding mechanisms occurring durin...
We report the first ultra-fast time-resolved quantitative information on the quenching and partition...
We report the first ultra-fast time-resolved quantitative information on the quenching and partition...
We report the first ultra-fast time-resolved quantitative information on the quenching and partition...
Quenching and Partitioning (Q&P) processed steel is a promising candidate for the third-generation a...
High strength combined with excellent ductility can be achieved by quenching and partitioning (Q&P) ...
International audienceThe mechanisms behind the carbon enrichment of austenite during quenching and ...
International audienceUsing in situ high energy X-ray diffraction study of austenite formation in hy...
Abstract Phase transformation in low alloyed Fe-C steels during quenching and partitioning (Q&P)...
The effect of temperature (350 ◦C < M < 450 ◦C) on the partitioning mechanisms and the final microst...
The present study reveals the microstructural evolution and corresponding mechanisms occurring durin...
We report the first ultra-fast time-resolved quantitative information on the quenching and partition...
We report the first ultra-fast time-resolved quantitative information on the quenching and partition...
We report the first ultra-fast time-resolved quantitative information on the quenching and partition...
Quenching and Partitioning (Q&P) processed steel is a promising candidate for the third-generation a...
High strength combined with excellent ductility can be achieved by quenching and partitioning (Q&P) ...
International audienceThe mechanisms behind the carbon enrichment of austenite during quenching and ...
International audienceUsing in situ high energy X-ray diffraction study of austenite formation in hy...
Abstract Phase transformation in low alloyed Fe-C steels during quenching and partitioning (Q&P)...
The effect of temperature (350 ◦C < M < 450 ◦C) on the partitioning mechanisms and the final microst...