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Dislocation Strengthening without Ductility Trade-off in Metastable Austenitic Steels

  • Jiabin Liu
  • , Yongbin Jin
  • , Xiaoyang Fang
  • , Chenxu Chen
  • , Qiong Feng
  • , Xiaowei Liu
  • , Yuzeng Chen
  • , Tao Suo
  • , Feng Zhao
  • , Tianlin Huang
  • , Hongtao Wang
  • , Xi Wang
  • , Youtong Fang
  • , Yujie Wei
  • , Liang Meng
  • , Jian Lu
  • , Wei Yang
  • Xi'an Jiaotong University
  • Zhejiang University
  • City University of Hong Kong
  • Northwestern Polytechnical University Xian
  • Center for High Pressure Science & Technology Advanced Research
  • College of Materials Science and Engineering
  • Beijing Jiaotong University
  • CAS - Institute of Mechanics

Research output: Contribution to journalArticlepeer-review

56 Scopus citations

Abstract

Strength and ductility are mutually exclusive if they are manifested as consequence of the coupling between strengthening and toughening mechanisms. One notable example is dislocation strengthening in metals, which invariably leads to reduced ductility. However, this trend is averted in metastable austenitic steels. A one-step thermal mechanical treatment (TMT), i.e. hot rolling, can effectively enhance the yielding strength of the metastable austenitic steel from 322 ± 18 MPa to 675 ± 15 MPa, while retaining both the formability and hardenability. It is noted that no boundaries are introduced in the optimized TMT process and all strengthening effect originates from dislocations with inherited thermal stability. The success of this method relies on the decoupled strengthening and toughening mechanisms in metastable austenitic steels, in which yield strength is controlled by initial dislocation density while ductility is retained by the capability to nucleate new dislocations to carry plastic deformation. Especially, the simplicity in processing enables scaling and industrial applications to meet the challenging requirements of emissions reduction. On the other hand, the complexity in the underlying mechanism of dislocation strengthening in this case may shed light on a different route of material strengthening by stimulating dislocation activities, rather than impeding motion of dislocations.

Original languageEnglish
Article number35345
JournalScientific Reports
Volume6
DOIs
StatePublished - 14 Oct 2016

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