Influence of chromium content and prior deformation on the continuous cooling transformation diagram of low-carbon bainitic steels

Mohammed Ali*, Antti Kaijalainen, Jaakko Hannula, David Porter, Jukka Kömi

*Corresponding author for this work

Research output: Chapter in Book/Report/Conference proceedingConference article in proceedingsScientificpeer-review

3 Citations (Scopus)

Abstract

The effect of chromium content and prior hot deformation of the austenite on the continuous cooling transformation (CCT) diagram of a newly developed low-carbon bainitic steel has been studied using dilatometer measurements conducted on a Gleeble 3800 simulator with cooling rates ranging from 2-80 °C/s. After austenitization at 1100 °C, specimens were either cooled without strain or given 0.6 strain at 880 °C prior to dilatometer measurements. The resultant microstructures have been studied using laser scanning confocal microscopy, scanning electron microscopy and macrohardness measurements. CCT and deformation continuous cooling transformation (DCCT) diagrams were constructed based on the dilatation curves, final microstructures and hardness values. Depending on the cooling rate, the microstructures of the investigated steels after cooling from the austenite region consist of one or more of the following microstructural components: lath-like upper bainite, i.e. bainitic ferrite (BF), granular bainite (GB), polygonal ferrite (PF) and pearlite (P). The proportion of BF to GB as well as the hardness of the transformation products decreased with decreasing cooling rate. The cooling rate at which PF starts to appear depends on the steel composition. With both undeformed and deformed austenite, increasing the chromium content led to higher hardenability and refinement of the microstructure, promoting the formation of BF and shifting the ferrite start curve to lower cooling rates. Prior hot deformation shifted the transformation curves to shorter times and higher temperatures and led to a reduction in hardness at the low cooling rates through the promotion of ferrite formation.

Original languageEnglish
Title of host publicationRecent Advances in Materials Science and Engineering II
EditorsMohamed M. Rashad, Taha Mattar
PublisherTrans Tech Publications Ltd
Pages58-67
Number of pages10
ISBN (Print)9783035715347
DOIs
Publication statusPublished - 2020
MoE publication typeA4 Article in a conference publication
Event2nd International Conference on Materials Science and Engineering: Recent Advances and Challenges, ICMSE-RAC 2019 - Cairo, Egypt
Duration: 11 Mar 201913 Mar 2019

Publication series

SeriesKey Engineering Materials
Volume835
ISSN1013-9826

Conference

Conference2nd International Conference on Materials Science and Engineering: Recent Advances and Challenges, ICMSE-RAC 2019
Country/TerritoryEgypt
CityCairo
Period11/03/1913/03/19

Keywords

  • CCT and DCCT diagrams
  • Gleeble simulation
  • Hot deformation

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