Phase transformations in a boron-alloyed steel at high heating rates

Publikation: Beitrag in FachzeitschriftKonferenzaufsatz in FachzeitschriftForschungPeer-Review

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  • National Metallurgical Academy of Ukraine
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OriginalspracheEnglisch
Seiten (von - bis)1062-1070
Seitenumfang9
FachzeitschriftProcedia Manufacturing
Jahrgang15
Frühes Online-Datum11 Aug. 2018
PublikationsstatusVeröffentlicht - 2018
Veranstaltung17th International Conference on Metal Forming, METAL FORMING 2018 - Toyohashi, Japan
Dauer: 16 Sept. 201819 Sept. 2018

Abstract

Products or semi-finished products featuring tailored properties are highly relevant for many industrial applications. Hence, new technologies that allow to locally adapt mechanical properties are of key interest. For example, tailoring properties in profiles or tubes by a local heat-treatment appear to be promising in combination with subsequent forming operations requiring locally adapted material strength to realize complex shapes. To implement an inline process of tube forming and local heat treatment by inductive heating and spray quenching, dilatometric investigations were carried out for a heat treatable boron-alloyed steel 1.5528 (22MnB5). In particular, focus was on the effect of high inductive heating rates on the austenite formation. The influence of heating rates in the range from 500 K/s to 2500 K/s on the austenitization was evaluated and a continuous time-temperature-austenitization diagram proposed. The results can be used to compute the decomposition of ferrite and pearlite due to inductive heating.

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Phase transformations in a boron-alloyed steel at high heating rates. / Hordych, Illia; Bild, Konrad; Boiarkin, Viacheslav et al.
in: Procedia Manufacturing, Jahrgang 15, 2018, S. 1062-1070.

Publikation: Beitrag in FachzeitschriftKonferenzaufsatz in FachzeitschriftForschungPeer-Review

Hordych I, Bild K, Boiarkin V, Rodman D, Nürnberger F. Phase transformations in a boron-alloyed steel at high heating rates. Procedia Manufacturing. 2018;15:1062-1070. Epub 2018 Aug 11. doi: 10.1016/j.promfg.2018.07.386, 10.15488/5026
Hordych, Illia ; Bild, Konrad ; Boiarkin, Viacheslav et al. / Phase transformations in a boron-alloyed steel at high heating rates. in: Procedia Manufacturing. 2018 ; Jahrgang 15. S. 1062-1070.
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abstract = "Products or semi-finished products featuring tailored properties are highly relevant for many industrial applications. Hence, new technologies that allow to locally adapt mechanical properties are of key interest. For example, tailoring properties in profiles or tubes by a local heat-treatment appear to be promising in combination with subsequent forming operations requiring locally adapted material strength to realize complex shapes. To implement an inline process of tube forming and local heat treatment by inductive heating and spray quenching, dilatometric investigations were carried out for a heat treatable boron-alloyed steel 1.5528 (22MnB5). In particular, focus was on the effect of high inductive heating rates on the austenite formation. The influence of heating rates in the range from 500 K/s to 2500 K/s on the austenitization was evaluated and a continuous time-temperature-austenitization diagram proposed. The results can be used to compute the decomposition of ferrite and pearlite due to inductive heating.",
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AU - Hordych, Illia

AU - Bild, Konrad

AU - Boiarkin, Viacheslav

AU - Rodman, Dmytro

AU - Nürnberger, Florian

N1 - Funding information: The authors thank the German Research Foundation for financial support of the work carried out within the scope of the graduate school’s IRTG 1627 V“ irtual Materials and Structures and their Validation”, subproject C5 V“ irtual Design and Manufacturing of Tailored Tubes”. Special thanks go to Daniel Rosenbusch from the Institute of Forming Technology and Machines (IFUM) for performing the dilatometric investigations .

PY - 2018

Y1 - 2018

N2 - Products or semi-finished products featuring tailored properties are highly relevant for many industrial applications. Hence, new technologies that allow to locally adapt mechanical properties are of key interest. For example, tailoring properties in profiles or tubes by a local heat-treatment appear to be promising in combination with subsequent forming operations requiring locally adapted material strength to realize complex shapes. To implement an inline process of tube forming and local heat treatment by inductive heating and spray quenching, dilatometric investigations were carried out for a heat treatable boron-alloyed steel 1.5528 (22MnB5). In particular, focus was on the effect of high inductive heating rates on the austenite formation. The influence of heating rates in the range from 500 K/s to 2500 K/s on the austenitization was evaluated and a continuous time-temperature-austenitization diagram proposed. The results can be used to compute the decomposition of ferrite and pearlite due to inductive heating.

AB - Products or semi-finished products featuring tailored properties are highly relevant for many industrial applications. Hence, new technologies that allow to locally adapt mechanical properties are of key interest. For example, tailoring properties in profiles or tubes by a local heat-treatment appear to be promising in combination with subsequent forming operations requiring locally adapted material strength to realize complex shapes. To implement an inline process of tube forming and local heat treatment by inductive heating and spray quenching, dilatometric investigations were carried out for a heat treatable boron-alloyed steel 1.5528 (22MnB5). In particular, focus was on the effect of high inductive heating rates on the austenite formation. The influence of heating rates in the range from 500 K/s to 2500 K/s on the austenitization was evaluated and a continuous time-temperature-austenitization diagram proposed. The results can be used to compute the decomposition of ferrite and pearlite due to inductive heating.

KW - 22MnB5

KW - Austenite transformation

KW - Induction heating

KW - Tailored properties

KW - Tube forming

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M3 - Conference article

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JO - Procedia Manufacturing

JF - Procedia Manufacturing

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