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The present work was conducted to evaluate the effects of substructure development on the strain hardening behavior of Fe–17.5Mn–8.3Al-0.74C–0.14Si lightweight steel. This was performed applying tensile testing method at ambient temperature. The significant strain hardening capability of the experimental steel is attributed to the cell structure formation and its progressive evolution to subgrains...
The high temperature deformation behavior of a duplex low density steel (Fe-17.5Mn-8.3Al-0.74C-0.14Si, wt. %) was investigated. This was performed through utilizing the hot tensile deformation scheme with a particular emphasis on the austenite grain refinement mechanisms. The extended dynamic recovery under the lowest applied strain rate (0.0001s−1) was considered as the main restoration mechanism...
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