The Effect of Strain in Recrystallization Region on Interphase Precipitation and Mechanical Properties of Ferritic Microalloyed Steels

High yield strength (710–862 MPa) ferritic microalloyed steels are developed through the combined contribution of Nb, Mo, V, and Cr microalloying and controlled thermomechanical treatment. Microstructures and mechanical properties are characterized using advanced microscopy techniques and uniaxial tensile testing. NbV carbonitrides with/without Mo (depending on steel composition) are formed in austenite and range from 30 to 70 nm in average diameter. However, V‐ and Cr‐rich interphase (3–7 nm range) and random (1–6 nm range) precipitates are found in polygonal ferrite. An increase in roughing strain in the recrystallization region results in finer polygonal ferrite grains, higher number density of NbV carbonitrides and VCr interphase precipitates, and their size reduction. Higher roughing strain also minimize the intersheet spacing of interphase precipitates. Finer polygonal ferrite grains and a greater number of nanosized interphase precipitates are responsible for the higher yield strength of 862 MPa in the VCrNb steel processed with a larger strain in the recrystallization region.

Location
Deutsche Nationalbibliothek Frankfurt am Main
Extent
Online-Ressource
Language
Englisch

Bibliographic citation
The Effect of Strain in Recrystallization Region on Interphase Precipitation and Mechanical Properties of Ferritic Microalloyed Steels ; day:09 ; month:07 ; year:2022 ; extent:13
Advanced engineering materials ; (09.07.2022) (gesamt 13)

Creator
Singh, Navjeet
Wexler, David
Kostryzhev, Andrii
Killmore, Chris
Pereloma, Elena

DOI
10.1002/adem.202200330
URN
urn:nbn:de:101:1-2022070915260251006292
Rights
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Last update
15.08.2025, 7:28 AM CEST

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Associated

  • Singh, Navjeet
  • Wexler, David
  • Kostryzhev, Andrii
  • Killmore, Chris
  • Pereloma, Elena

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