Influence of Cooling Process Routes after Intercritical Annealing on Impact Toughness of Duplex Type Medium Mn Steel

To apply the duplex type low-carbon medium-manganese steel to the hot/warm-forging and -stamping products, the influence of cooling process routes immediately after intercritical annealing such as air-cooling (AC) and isothermal transformation (IT) processes on the impact toughness of 0.2%C-1.5%Si-5...

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Main Authors: Koh-ichi Sugimoto, Hikaru Tanino
Format: Article
Language:English
Published: MDPI AG 2021-07-01
Series:Metals
Subjects:
Online Access:https://www.mdpi.com/2075-4701/11/7/1143
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spelling doaj-43ad25edc65f4dea858e894380ed885f2021-07-23T13:54:24ZengMDPI AGMetals2075-47012021-07-01111143114310.3390/met11071143Influence of Cooling Process Routes after Intercritical Annealing on Impact Toughness of Duplex Type Medium Mn SteelKoh-ichi Sugimoto0Hikaru Tanino1School of Science and Technology, Shinshu University, 4-17-1 Wakasato, Nagano 380-8553, JapanSchool of Science and Technology, Shinshu University, 4-17-1 Wakasato, Nagano 380-8553, JapanTo apply the duplex type low-carbon medium-manganese steel to the hot/warm-forging and -stamping products, the influence of cooling process routes immediately after intercritical annealing such as air-cooling (AC) and isothermal transformation (IT) processes on the impact toughness of 0.2%C-1.5%Si-5%Mn (in mass %) duplex type medium-Mn (D-MMn) steel was investigated. Moreover the microstructural and tensile properties were also investigated. The AC process increased the volume fraction of reverted austenite but decreased the thermal and mechanical stability in the D-MMn steel, compared to the IT process. The AC process increased the tensile strength but decreased the total elongation. The Charpy V-notch impact value and ductile-brittle transition temperature were deteriorated by the AC process, compared to the IT process. This deterioration of the impact toughness was mainly related to the reverted austenite characteristics and fracture mode.https://www.mdpi.com/2075-4701/11/7/1143heat treatmentmicrostructurereverted austenitetensile propertyimpact toughnessduplex type medium Mn steel
collection DOAJ
language English
format Article
sources DOAJ
author Koh-ichi Sugimoto
Hikaru Tanino
spellingShingle Koh-ichi Sugimoto
Hikaru Tanino
Influence of Cooling Process Routes after Intercritical Annealing on Impact Toughness of Duplex Type Medium Mn Steel
Metals
heat treatment
microstructure
reverted austenite
tensile property
impact toughness
duplex type medium Mn steel
author_facet Koh-ichi Sugimoto
Hikaru Tanino
author_sort Koh-ichi Sugimoto
title Influence of Cooling Process Routes after Intercritical Annealing on Impact Toughness of Duplex Type Medium Mn Steel
title_short Influence of Cooling Process Routes after Intercritical Annealing on Impact Toughness of Duplex Type Medium Mn Steel
title_full Influence of Cooling Process Routes after Intercritical Annealing on Impact Toughness of Duplex Type Medium Mn Steel
title_fullStr Influence of Cooling Process Routes after Intercritical Annealing on Impact Toughness of Duplex Type Medium Mn Steel
title_full_unstemmed Influence of Cooling Process Routes after Intercritical Annealing on Impact Toughness of Duplex Type Medium Mn Steel
title_sort influence of cooling process routes after intercritical annealing on impact toughness of duplex type medium mn steel
publisher MDPI AG
series Metals
issn 2075-4701
publishDate 2021-07-01
description To apply the duplex type low-carbon medium-manganese steel to the hot/warm-forging and -stamping products, the influence of cooling process routes immediately after intercritical annealing such as air-cooling (AC) and isothermal transformation (IT) processes on the impact toughness of 0.2%C-1.5%Si-5%Mn (in mass %) duplex type medium-Mn (D-MMn) steel was investigated. Moreover the microstructural and tensile properties were also investigated. The AC process increased the volume fraction of reverted austenite but decreased the thermal and mechanical stability in the D-MMn steel, compared to the IT process. The AC process increased the tensile strength but decreased the total elongation. The Charpy V-notch impact value and ductile-brittle transition temperature were deteriorated by the AC process, compared to the IT process. This deterioration of the impact toughness was mainly related to the reverted austenite characteristics and fracture mode.
topic heat treatment
microstructure
reverted austenite
tensile property
impact toughness
duplex type medium Mn steel
url https://www.mdpi.com/2075-4701/11/7/1143
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