Evolution of transformation plasticity in austenite-to-bainite phase transformation: A multi parameter problem

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  • Paderborn University
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Original languageEnglish
Pages (from-to)73-80
Number of pages8
JournalMaterials Science and Engineering A
Volume541
Publication statusPublished - 10 Feb 2012
Externally publishedYes

Abstract

The current paper presents a thorough experimental analysis of the austenite-to-bainite phase transformation, and provides insight into microstructural changes associated with the observed transformation plasticity (TP). Specifically, the evolution of TP was studied in the presence of several parameters, namely pre-deformation, temperature and superimposed constant stresses, and the observed phenomena were linked to microstructural changes under these circumstances based on experimental data. One major finding is that the evolution of TP strains is governed both by the superimposed external stresses and the temperature dependence of internal stresses introduced by pre-deformation.

Keywords

    Austenitization, Bainite, Microstructure, Phase transformation, Pre-deformation

ASJC Scopus subject areas

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Evolution of transformation plasticity in austenite-to-bainite phase transformation: A multi parameter problem. / Lambers, H. G.; Canadinc, D.; Maier, H. J.
In: Materials Science and Engineering A, Vol. 541, 10.02.2012, p. 73-80.

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T1 - Evolution of transformation plasticity in austenite-to-bainite phase transformation

T2 - A multi parameter problem

AU - Lambers, H. G.

AU - Canadinc, D.

AU - Maier, H. J.

N1 - Funding information: Financial support by Deutsche Forschungsgemeinschaft within the Transregional Collaborative Research Centre TRR 30 “Prozessintegrierte Herstellung funktional gradierter Strukturen auf der Grundlage thermo-mechanisch gekoppelter Phänomene” is gratefully acknowledged. D. Canadinc acknowledges financial support by the Turkish Academy of Sciences (TÜBA) within the Young Scientist Award Program (GEB?P) .

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Y1 - 2012/2/10

N2 - The current paper presents a thorough experimental analysis of the austenite-to-bainite phase transformation, and provides insight into microstructural changes associated with the observed transformation plasticity (TP). Specifically, the evolution of TP was studied in the presence of several parameters, namely pre-deformation, temperature and superimposed constant stresses, and the observed phenomena were linked to microstructural changes under these circumstances based on experimental data. One major finding is that the evolution of TP strains is governed both by the superimposed external stresses and the temperature dependence of internal stresses introduced by pre-deformation.

AB - The current paper presents a thorough experimental analysis of the austenite-to-bainite phase transformation, and provides insight into microstructural changes associated with the observed transformation plasticity (TP). Specifically, the evolution of TP was studied in the presence of several parameters, namely pre-deformation, temperature and superimposed constant stresses, and the observed phenomena were linked to microstructural changes under these circumstances based on experimental data. One major finding is that the evolution of TP strains is governed both by the superimposed external stresses and the temperature dependence of internal stresses introduced by pre-deformation.

KW - Austenitization

KW - Bainite

KW - Microstructure

KW - Phase transformation

KW - Pre-deformation

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