Superplasticity in a lean Fe-Mn-Al steel

  • Han, Jeongho
  • Kang, Seok-Hyeon
  • Lee, Seung-Joon
  • Kawasaki, Megumi
  • Lee, Han-Joo
  • 외 3명
Citations

WEB OF SCIENCE

73
Citations

SCOPUS

84

초록

Superplastic alloys exhibit extremely high ductility (> 300%) without cracks when tensile-strained at temperatures above half of their melting point. Superplasticity, which resembles the flow behavior of honey, is caused by grain boundary sliding in metals. Although several non-ferrous and ferrous superplastic alloys are reported, their practical applications are limited due to high material cost, low strength after forming, high deformation temperature, and complicated fabrication process. Here we introduce a new compositionally lean (Fe-6.6Mn-2.3Al, wt.%) superplastic medium Mn steel that resolves these limitations. The medium Mn steel is characterized by ultrafine grains, low material costs, simple fabrication, i.e., conventional hot and cold rolling, low deformation temperature (ca. 650 degrees C) and superior ductility above 1300% at 850 degrees C. We suggest that this ultrafine-grained medium Mn steel may accelerate the commercialization of superplastic ferrous alloys.

키워드

DUPLEX STAINLESS-STEELSZN-22 PCT ALDYNAMIC RECRYSTALLIZATIONTEMPERATURE-DEPENDENCEDEFORMATION MECHANISMIN718 SUPERALLOYGRAIN-SIZEALLOYBEHAVIORMICROSTRUCTURE
제목
Superplasticity in a lean Fe-Mn-Al steel
저자
Han, JeonghoKang, Seok-HyeonLee, Seung-JoonKawasaki, MegumiLee, Han-JooPonge, DirkRaabe, DierkLee, Young-Kook
DOI
10.1038/s41467-017-00814-y
발행일
2017-09
유형
Article
저널명
Nature Communications
8

파일 다운로드