Special Features of L21–L10 Thermoelastic Martensitic Transformations in Ni54Fe19Ga27 Single Crystals in Tension

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Autoren

  • E. E. Timofeeva
  • E. Yu Panchenko
  • Yu I. Chumlyakov
  • A. I. Tagil’tsev
  • V. A. Kirillov
  • H. J. Maier

Organisationseinheiten

Externe Organisationen

  • Tomsk State University
Forschungs-netzwerk anzeigen

Details

OriginalspracheEnglisch
Seiten (von - bis)821-827
Seitenumfang7
FachzeitschriftRussian Physics Journal
Jahrgang61
Ausgabenummer5
PublikationsstatusVeröffentlicht - 14 Sept. 2018

Abstract

Special features of L21–(14М)–L10 martensitic transformations (MT) are experimentally established for [001]-oriented Ni54Fe19Ga27 (аt.%) single crystals under tensile stress, including staging of superelasticity curves, stress hysteresis, and strain level of martensite formation depending on the test temperature and MT sequence. An additional stage of inelastic strain with high strain hardening coefficient and a stress drop arise on the σ(ε) curves in the interval of changes of the stress-induced MT sequence from L21–14M–L10 to L21–L10 (320–400 K) at superelasticity (SE). Special features and physical reasons of this stage and of the stress drop related with the processes of origin and detwinning of L10 martensite during stress-induced L21–L10 transformation are established. The stage of inelastic strain and the stress drop are absent at the L21–14М–L10 MT in the [001]-oriented single crystals or at the L21–L10 MT at other orientations, where detwinning of L10 martensite is suppressed by geometrical reasons.

ASJC Scopus Sachgebiete

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Special Features of L21–L10 Thermoelastic Martensitic Transformations in Ni54Fe19Ga27 Single Crystals in Tension. / Timofeeva, E. E.; Panchenko, E. Yu; Chumlyakov, Yu I. et al.
in: Russian Physics Journal, Jahrgang 61, Nr. 5, 14.09.2018, S. 821-827.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Timofeeva EE, Panchenko EY, Chumlyakov YI, Tagil’tsev AI, Kirillov VA, Maier HJ. Special Features of L21–L10 Thermoelastic Martensitic Transformations in Ni54Fe19Ga27 Single Crystals in Tension. Russian Physics Journal. 2018 Sep 14;61(5):821-827. doi: 10.1007/s11182-018-1465-8
Timofeeva, E. E. ; Panchenko, E. Yu ; Chumlyakov, Yu I. et al. / Special Features of L21–L10 Thermoelastic Martensitic Transformations in Ni54Fe19Ga27 Single Crystals in Tension. in: Russian Physics Journal. 2018 ; Jahrgang 61, Nr. 5. S. 821-827.
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abstract = "Special features of L21–(14М)–L10 martensitic transformations (MT) are experimentally established for [001]-oriented Ni54Fe19Ga27 (аt.%) single crystals under tensile stress, including staging of superelasticity curves, stress hysteresis, and strain level of martensite formation depending on the test temperature and MT sequence. An additional stage of inelastic strain with high strain hardening coefficient and a stress drop arise on the σ(ε) curves in the interval of changes of the stress-induced MT sequence from L21–14M–L10 to L21–L10 (320–400 K) at superelasticity (SE). Special features and physical reasons of this stage and of the stress drop related with the processes of origin and detwinning of L10 martensite during stress-induced L21–L10 transformation are established. The stage of inelastic strain and the stress drop are absent at the L21–14М–L10 MT in the [001]-oriented single crystals or at the L21–L10 MT at other orientations, where detwinning of L10 martensite is suppressed by geometrical reasons.",
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AU - Panchenko, E. Yu

AU - Chumlyakov, Yu I.

AU - Tagil’tsev, A. I.

AU - Kirillov, V. A.

AU - Maier, H. J.

N1 - © 2018, Springer Science Business Media, LLC, part of Springer Nature

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N2 - Special features of L21–(14М)–L10 martensitic transformations (MT) are experimentally established for [001]-oriented Ni54Fe19Ga27 (аt.%) single crystals under tensile stress, including staging of superelasticity curves, stress hysteresis, and strain level of martensite formation depending on the test temperature and MT sequence. An additional stage of inelastic strain with high strain hardening coefficient and a stress drop arise on the σ(ε) curves in the interval of changes of the stress-induced MT sequence from L21–14M–L10 to L21–L10 (320–400 K) at superelasticity (SE). Special features and physical reasons of this stage and of the stress drop related with the processes of origin and detwinning of L10 martensite during stress-induced L21–L10 transformation are established. The stage of inelastic strain and the stress drop are absent at the L21–14М–L10 MT in the [001]-oriented single crystals or at the L21–L10 MT at other orientations, where detwinning of L10 martensite is suppressed by geometrical reasons.

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