Effect of Hydrogen on Orientation Dependence of Critical Shear Stress and Mechanism of Straining in Single Crystals of Stable Stainless Steel

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Autoren

  • I. V. Kireeva
  • Yu I. Chumlyakov
  • A. V. Tverskov
  • H. Maier

Externe Organisationen

  • Tomsk State University
  • Universität Paderborn
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Details

OriginalspracheEnglisch
Seiten (von - bis)522-525
Seitenumfang4
FachzeitschriftTechnical physics letters
Jahrgang37
Ausgabenummer6
PublikationsstatusVeröffentlicht - 8 Juli 2011
Extern publiziertJa

Abstract

The effect of hydrogen on the critical shear stress (τcr), dislocation structure, and mechanisms of straining (slip vs. twinning) in single crystals of Fe-26Cr-32Ni-3Mo (wt %) austenite stainless steel has been studied. It is shown for the first time that hydrogenation leads to the appearance of the orientation dependence of τcr, which is absent in the initial hydrogen-free crystals. This dependence of τcr is related to a decrease in the stacking fault energy, which determines a change of the mechanism of straining from slip to twinning.

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Effect of Hydrogen on Orientation Dependence of Critical Shear Stress and Mechanism of Straining in Single Crystals of Stable Stainless Steel. / Kireeva, I. V.; Chumlyakov, Yu I.; Tverskov, A. V. et al.
in: Technical physics letters, Jahrgang 37, Nr. 6, 08.07.2011, S. 522-525.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Kireeva IV, Chumlyakov YI, Tverskov AV, Maier H. Effect of Hydrogen on Orientation Dependence of Critical Shear Stress and Mechanism of Straining in Single Crystals of Stable Stainless Steel. Technical physics letters. 2011 Jul 8;37(6):522-525. doi: 10.1134/S1063785011060071
Kireeva, I. V. ; Chumlyakov, Yu I. ; Tverskov, A. V. et al. / Effect of Hydrogen on Orientation Dependence of Critical Shear Stress and Mechanism of Straining in Single Crystals of Stable Stainless Steel. in: Technical physics letters. 2011 ; Jahrgang 37, Nr. 6. S. 522-525.
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abstract = "The effect of hydrogen on the critical shear stress (τcr), dislocation structure, and mechanisms of straining (slip vs. twinning) in single crystals of Fe-26Cr-32Ni-3Mo (wt %) austenite stainless steel has been studied. It is shown for the first time that hydrogenation leads to the appearance of the orientation dependence of τcr, which is absent in the initial hydrogen-free crystals. This dependence of τcr is related to a decrease in the stacking fault energy, which determines a change of the mechanism of straining from slip to twinning.",
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AU - Tverskov, A. V.

AU - Maier, H.

N1 - Funding information: Acknowledgments. This study was supported in part by the Russian foundation for Basic Research (project nos. 10 08 92501 IK and 10 03 00154) the US Civilian Research and Development Foundation (grant no. RUE1 2983 TO 10).

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