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Effect of cold rolling and subsequent heat treatment on microstructural evolution and mechanical properties of Fe-Mn-Al-C-(Ni) based austenitic low-density steels

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dc.contributor.author MISHRA B.
dc.contributor.author SARKAR R.
dc.contributor.author SINGH V.
dc.contributor.author KUMAR D.
dc.contributor.author MUKHOPADHYAY A.
dc.contributor.author MADHU V.
dc.contributor.author PRASAD M.J.N.V.
dc.date.accessioned 2023-03-17T05:43:37Z
dc.date.available 2023-03-17T05:43:37Z
dc.date.issued 2022
dc.identifier.citation Materials Science and Engineering A,861 en_US
dc.identifier.issn 9215093
dc.identifier.uri https://dx.doi.org/10.1016/j.msea.2022.144324
dc.identifier.uri http://localhost:8080/xmlui/handle/100/40860
dc.description.abstract Thermo-mechanical processing in a two-phase domain of low-density steel (lds) has the potential of enhancing strength-ductility combination. In the present study, the effects of alloy composition, cold rolling and heat treatment temperature (973–1173 k) on concurrent precipitation of κ-carbide/b2 particles and recrystallization and subsequently, mechanical properties include hardness variation and tensile response are evaluated. In order to understand the synergistic effect of mn/ni ratio towards selecting the two-phase processing window, three lds alloy compositions, namely fe–28mn–9al-0.9c, fe–28mn–9al-0.9c–5ni and fe–15mn–9al-0.9c–5ni (in weight percent) are vacuum induction melted, hot rolled and then cold rolled to 50% reduction in thickness at room temperature. The lds alloys containing ni showed much delayed recrystallization as compared to ni-free lds. The mn/ni ratio played a vital role towards controlling precipitation and recrystallization and accordingly, the mechanical properties. All the three alloys exhibited similar hardness, strength and ductility levels after 50% cold reduction. Upon heat treatment, there was precipitation of intergranular and intragranular b2 phase particles along with κ-carbides, whose fraction decreased with increasing the temperature. The tensile response of lds alloys was influenced primarily by the volume fraction of these precipitates as well as the recrystallized austenite grains. Planar slip activity, dynamic slip band refinement in conjunction with dislocation-twin interaction mechanisms were noticed in fully recrystallized austenite and thereby leading to enhanced strain hardening and ductility. Furthermore, lowering mn in ni containing lds reduced the processing temperature window of the alloy in two-phase region. © 2022 elsevier b.v. en_US
dc.language.iso English en_US
dc.publisher Elsevier Ltd en_US
dc.subject AUSTENITE en_US
dc.subject COLD ROLLING en_US
dc.subject LOW-DENSITY STEELS en_US
dc.subject MICROSTRUCTURE en_US
dc.subject TENSILE PROPERTIES en_US
dc.subject.other Alloying en_US
dc.subject.other Austenite en_US
dc.subject.other Carbides en_US
dc.subject.other Density (specific gravity) en_US
dc.subject.other Ductility en_US
dc.subject.other Hardness en_US
dc.subject.other Hot rolling en_US
dc.subject.other Metal cladding en_US
dc.subject.other Nickel en_US
dc.subject.other Precipitation (chemical) en_US
dc.subject.other Recrystallization (metallurgy) en_US
dc.subject.other Strain hardening en_US
dc.subject.other Temperature en_US
dc.subject.other Tensile strength en_US
dc.subject.other Textures en_US
dc.subject.other Alloy compositions en_US
dc.subject.other Austenitic en_US
dc.subject.other Heat treatment temperature en_US
dc.subject.other Low-density steel en_US
dc.subject.other Lower density en_US
dc.subject.other Phase domain en_US
dc.subject.other Recrystallisation en_US
dc.subject.other Tensile response en_US
dc.subject.other Thermomechanical processing en_US
dc.subject.other Two phase en_US
dc.subject.other Cold rolling en_US
dc.title Effect of cold rolling and subsequent heat treatment on microstructural evolution and mechanical properties of Fe-Mn-Al-C-(Ni) based austenitic low-density steels en_US
dc.type Article en_US


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