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Erschienen in: Physics of Metals and Metallography 10/2019

01.10.2019 | STRUCTURE, PHASE TRANSFORMATIONS, AND DIFFUSION

Ferritic Decomposition in Fe–36Ni–3Cr Invar Alloy

verfasst von: V. V. Sagaradze, N. V. Kataeva, V. A. Zavalishin, A. V. Litvinov, M. F. Klyukina

Erschienen in: Physics of Metals and Metallography | Ausgabe 10/2019

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Abstract

Nickel redistribution and austenite decomposition into ferrite with the formation of up to 15% α‑ferrite crystals 10–100 nm in size in a fairly stable Fe–36Ni–3Cr invar alloy were found. The austenite decomposition during heating in a 250–400°C temperature range is intensified by preliminary strong plastic deformation by rolling or shearing under high pressure.

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Literatur
1.
Zurück zum Zitat V. I. Izotov and P. A. Khandarov, “Classification of martensitic structures in iron alloys,” Fiz. Met. Metalloved. 35, 332–338 (1972). V. I. Izotov and P. A. Khandarov, “Classification of martensitic structures in iron alloys,” Fiz. Met. Metalloved. 35, 332–338 (1972).
2.
Zurück zum Zitat V. V. Sagaradze and A. I. Uvarov, Strengthening and Properties of Austenitic Steels (RIO UrO RAN, Ekaterinburg, 2013) [in Russian]. V. V. Sagaradze and A. I. Uvarov, Strengthening and Properties of Austenitic Steels (RIO UrO RAN, Ekaterinburg, 2013) [in Russian].
3.
Zurück zum Zitat V. V. Sagaradze, V. E. Danilchenko, P. L’Heritier, and V. A. Shabashov, “The structure and properties of Fe–Ni alloys with a nanocrystalline austenite formed under different conditions of γ → α → γ transformations,” Mater. Sci. Eng., A 337, 146–159 (2002).CrossRef V. V. Sagaradze, V. E. Danilchenko, P. L’Heritier, and V. A. Shabashov, “The structure and properties of Fe–Ni alloys with a nanocrystalline austenite formed under different conditions of γ → α → γ transformations,” Mater. Sci. Eng., A 337, 146–159 (2002).CrossRef
4.
Zurück zum Zitat A. E. Vol, Structure and Properties of Binary Metallic Systems (Fizmatgiz, Moscow, 1962), Vol. 2. A. E. Vol, Structure and Properties of Binary Metallic Systems (Fizmatgiz, Moscow, 1962), Vol. 2.
5.
Zurück zum Zitat V. V. Sagaradze and V. A. Shabashov, “The reasons for the active low-temperature redistribution of nickel in iron–nickel alloys,” Fiz. Met. Metalloved. 57, 1166–1171 (1984). V. V. Sagaradze and V. A. Shabashov, “The reasons for the active low-temperature redistribution of nickel in iron–nickel alloys,” Fiz. Met. Metalloved. 57, 1166–1171 (1984).
6.
Zurück zum Zitat R. R. Mulyukov, I. Z. Sharipov, K. A. Bukreeva, and I. Kh. Bitkulov, “Kinetics of changes in the saturation magnetization during annealings of the Fe–36% Ni invar alloy subjected to severe plastic deformation,” Phys. Met. Metallogr. 109, 234–237 (2010).CrossRef R. R. Mulyukov, I. Z. Sharipov, K. A. Bukreeva, and I. Kh. Bitkulov, “Kinetics of changes in the saturation magnetization during annealings of the Fe–36% Ni invar alloy subjected to severe plastic deformation,” Phys. Met. Metallogr. 109, 234–237 (2010).CrossRef
7.
Zurück zum Zitat R. R. Mulyukov, I. Kh. Bitkulov, and I. Z. Sharipov, “Effect of deformation nanostructuring and subsequent annealing on the phase-composition evolution of the invar alloy Fe–36%Ni,” Pis’ma Mater. 4, 11–14 (2014). R. R. Mulyukov, I. Kh. Bitkulov, and I. Z. Sharipov, “Effect of deformation nanostructuring and subsequent annealing on the phase-composition evolution of the invar alloy Fe–36%Ni,” Pis’ma Mater. 4, 11–14 (2014).
8.
Zurück zum Zitat M. V. Degtyarev, T. I. Chashchukhina, L. M. Voronova, A. M. Patselov, and V. P. Pilyugin, “Influence of the relaxation processes on the structure formation in pure metals and alloys under high-pressure deformation,” Acta Mater. 55, 6039–6050 (2007).CrossRef M. V. Degtyarev, T. I. Chashchukhina, L. M. Voronova, A. M. Patselov, and V. P. Pilyugin, “Influence of the relaxation processes on the structure formation in pure metals and alloys under high-pressure deformation,” Acta Mater. 55, 6039–6050 (2007).CrossRef
9.
Zurück zum Zitat A. I. Deryagin, V. A. Zavalishin, V. V. Sagaradze, and A. R. Kuznetsov, “Low-temperature strain-induced atomic segregation in chromium–nickel steels,” Phys. Met. Metallogr. 89, 610–621 (2000). A. I. Deryagin, V. A. Zavalishin, V. V. Sagaradze, and A. R. Kuznetsov, “Low-temperature strain-induced atomic segregation in chromium–nickel steels,” Phys. Met. Metallogr. 89, 610–621 (2000).
10.
Zurück zum Zitat J.-J. Zheng, C.-S. Li, S. He, B. Sai, Y.-l. Song, “Microstructural and tensile behavior of Fe–36Ni alloy after cryorolling and subsequent annealing,” Mater. Sci. Eng., A 670, 275–279 (2016).CrossRef J.-J. Zheng, C.-S. Li, S. He, B. Sai, Y.-l. Song, “Microstructural and tensile behavior of Fe–36Ni alloy after cryorolling and subsequent annealing,” Mater. Sci. Eng., A 670, 275–279 (2016).CrossRef
11.
Zurück zum Zitat A. I. Deryagin, V. A. Zavalishin, N. D. Zemtsova, V. G. Kuleev, N. P. Kolomeets, M. B. Rigmant, and V. V. Sagaradze, “Influence of external influence on magnetic properties and structure of austenitic 45GYuZ steel. II. Effect of post-deformation annealing,” Fiz. Met. Metalloved. 77, 128–136 (1994). A. I. Deryagin, V. A. Zavalishin, N. D. Zemtsova, V. G. Kuleev, N. P. Kolomeets, M. B. Rigmant, and V. V. Sagaradze, “Influence of external influence on magnetic properties and structure of austenitic 45GYuZ steel. II. Effect of post-deformation annealing,” Fiz. Met. Metalloved. 77, 128–136 (1994).
12.
Zurück zum Zitat V. V. Sagaradze, N. V. Kataeva, M. F. Klyukina, V. A. Zavalishin, K. A. Kozlov, V. V. Makarov and V. A. Shabashov, “Visualization of concentration micro-inhomogeneities in Fe–Ni alloys,” Phys. Met. Metallogr. 119, 1217–1221 (2018).CrossRef V. V. Sagaradze, N. V. Kataeva, M. F. Klyukina, V. A. Zavalishin, K. A. Kozlov, V. V. Makarov and V. A. Shabashov, “Visualization of concentration micro-inhomogeneities in Fe–Ni alloys,” Phys. Met. Metallogr. 119, 1217–1221 (2018).CrossRef
13.
Zurück zum Zitat P. R. Okamoto and L. E. Rehn, “Radiation induced segregation in binary and ternary alloys,” J. Nucl. Mater. 83, 2–23 (1979).CrossRef P. R. Okamoto and L. E. Rehn, “Radiation induced segregation in binary and ternary alloys,” J. Nucl. Mater. 83, 2–23 (1979).CrossRef
Metadaten
Titel
Ferritic Decomposition in Fe–36Ni–3Cr Invar Alloy
verfasst von
V. V. Sagaradze
N. V. Kataeva
V. A. Zavalishin
A. V. Litvinov
M. F. Klyukina
Publikationsdatum
01.10.2019
Verlag
Pleiades Publishing
Erschienen in
Physics of Metals and Metallography / Ausgabe 10/2019
Print ISSN: 0031-918X
Elektronische ISSN: 1555-6190
DOI
https://doi.org/10.1134/S0031918X19100119

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