A Dislocation-Based Theory for the Deformation Hardening Behavior of DP Steels: Impact of Martensite Content and Ferrite Grain Size

  • Bergström Y
  • Granbom Y
  • Sterkenburg D
N/ACitations
Citations of this article
116Readers
Mendeley users who have this article in their library.

This article is free to access.

Abstract

A dislocation model, accurately describing the uniaxial plastic stress-strain behavior of dual phase (DP) steels, is proposed and the impact of martensite content and ferrite grain size in four commercially produced DP steels is analyzed. It is assumed that the plastic deformation process is localized to the ferrite. This is taken into account by introducing a nonhomogeneity parameter, f ( ε ) , that specifies the volume fraction of ferrite taking active part in the plastic deformation process. It is found that the larger the martensite content the smaller the initial volume fraction of active ferrite which yields a higher initial deformation hardening rate. This explains the high energy absorbing capacity of DP steels with high volume fractions of martensite. Further, the effect of ferrite grain size strengthening in DP steels is important. The flow stress grain size sensitivity for DP steels is observed to be 7 times larger than that for single phase ferrite.

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Cite

CITATION STYLE

APA

Bergström, Y., Granbom, Y., & Sterkenburg, D. (2010). A Dislocation-Based Theory for the Deformation Hardening Behavior of DP Steels: Impact of Martensite Content and Ferrite Grain Size. Journal of Metallurgy, 2010, 1–16. https://doi.org/10.1155/2010/647198

Readers' Seniority

Tooltip

PhD / Post grad / Masters / Doc 54

63%

Researcher 21

24%

Professor / Associate Prof. 10

12%

Lecturer / Post doc 1

1%

Readers' Discipline

Tooltip

Materials Science 49

62%

Engineering 28

35%

Chemistry 1

1%

Physics and Astronomy 1

1%

Save time finding and organizing research with Mendeley

Sign up for free