Comparative analysis of deformation kinetics of structures of nickel alloys Х30Н60М9 and Х23Н65М13 according to the results of tensile tests
https://doi.org/10.34680/2076-8052.2024.3(137).436-452
Abstract
Abstract The relationship between the kinetics of deformation and internal stresses of samples of single- phase nickel alloys X30N60M9 and X23N65M13, formed during tensile deformation, has been studied. It has been established that one of the indicators that determines and characterizes the structural state is the indicator of the strain hardening coefficient – θ (θ=dσ/dɛ). Using photometric methods, the structural state of the samples was assessed. It was determined by theory and confirmed by experiment that the structural state of the X30N60M9 alloy sample is more stable, for identical test conditions.
About the Authors
D. L. MikhailovRussian Federation
Veliky Novgorod, Moscow
V. A. Ermishkin
Russian Federation
Moscow
N. A. Minina
Russian Federation
Moscow
References
1. Slutsker A. I. Formula Zhurkova [Zhurkov's Formula] // XV Peterburgskie Chteniya po problemam prochnosti [St. Petersburg Readings on Strength Problems]. Sankt- Peterburg, 12–14 aprelya 2005 g.: sbornik tezisov. Saint-Petersburg. P. 3-4. URL: http://www.issp.ac.ru/ebooks/conf/Chteniya_2005.pdf (Accessed: 06.04.2024).
2. Mikhailov D. L. Patent RF RU № 2613805, MPK S22S 19/05 (2006.01), C22C30/00 (2006.1). Korrozionno-stoikii splav na osnove nikele [Corrosion-resistant nickel-based alloy]: № 2016105314: decl. 02.17.2016: publ. 02.03.2017. 3 p.
3. Mikhailov D. L., Yermishkin V. A., Minina N. A., Kulagin S. P. Express analysis of the corrosion resistance of alloys of the Ni-Cr-Mo system (Ni-Cr, Ni-Mo) according to the set amount of tone in the reflected-light spectral group // Vestnik NovSU. 2023. 3 (132). 470-480. DOI: 10.34680/2076-8052.2023.3(132).470-480
4. Yermishkin V. A., Minina N. A., Fedotova N. L. Patent RF RU №2387978, МРК GO1N 21/55 (2006.01), GO1N 25/05 (2006/01). Sposob fotometricheskoi diagnostiki fazovikh prevrashchenii v tverdikh telakh po dannim analiza spektrov yarkosti otrazheniya sveta ot ikh poverkhnosti [A method for photometric diagnostics of phase transformations in solids based on the analysis of the brightness spectra of light reflection from their surface]: № 2008150799/28: decl. 12.23.2008: publ. 04.22.2010 / applicant is an institution of the Russian Academy of Sciences, the A. A. Baykov Institute of Metallurgy and Materials Science of the Russian Academy of Sciences. 4 p.
5. GOST 1497-84. Metalli. Metodi ispitanii na rastyazhenie: mezhgosudarstvennyj standart Rossijskoj Federacii: izdanie oficial'noe: utverzhden i vveden v dejstvie Postanovleniem Gosudarstvennogo komiteta SSSR po standartam ot 16.07.84 № 2515: vzamen GOST 1497-73 / razrabotan i vnesen Ministerstvom chernoj metallurgii SSSR. [Metals. Tensile testing methods: interstate standard of the Russian Federation: official publication: approved and put into effect by Resolution of the USSR State Committee for Standards dated 07/16/84 No. 2515: instead of GOST 1497-73 / developed and introduced by the Ministry of Ferrous Metallurgy of the USSR] Moscow: Standartinform; 1986. 24 p.
6. Vasilev B. Ye., Volkov M. Ye., Bredikhina Ye. N., Pleshcheev I. I. Construction of stress-strain curves for aviation materials database formation // Materials Physics and Mechanics. 2019. 42 (5). 656-670. DOI: 10.18720/MPM.4252019_19
7. Pismo-protokol AO «ChMZ» v adres IMET RAN [Protocol letter from ChMZ JSC to IMET RAS] №19-101/1860 -IC, 07.02.2022.
8. Kharin P.A., Zinchenko N.G. Medvedeva T.M., Shevakin A. F., Pantyukhin A. P., Polovov I. B., Kabanov I.V. Operational and technological properties of the CRNI62MO-VI alloy // Problemi chernoi metallurgii i materialovedeniya [Problems of ferrous metallurgy and materials science]. 2019. 3. 48-58.
9. Gindin I. A., Neklyudov I. M., Okovit V. S., Starolat V. P., Dyatlov V. P., Stratienko V. A. Issledovanie vliyaniya oblucheniya visokoenergetichnimi elektronami (250 MeV) na strukturu i svoistva alyuminiya [Investigation of the effect of irradiation with high- energy electrons (250 MeV) on the structure and properties of aluminum] // Voprosi atomnoi nauki i tekhniki. Seriya: Fizika radiatsionnikh povrezhdenii i radiatsionnoe materialovedenie [Issues of atomic science and technology. Series: Physics of radiation damage and radiation materials science: scientific and technical collection]. 1974. 1 (1). 71-73.
10. Votinov S. N., Maksimkin O. P. K voprosu o roli energii defekta upakovki v izmenenii strukturi i svoistv metallov i splavov v rezultate radiatsionnogo i termicheskogo vozdeistviya [On the role of packaging defect energy in changing the structure and properties of metals and alloys as a result of radiation and thermal effects] // Voprosi atomnoi nauki i tekhniki. Seriya: Fizika radiatsionnikh povrezhdenii i radiatsionnoe materialovedenie [Issues of atomic science and technology. Series: Physics of radiation damage and radiation materials science: scientific and technical collection]. 2002. 3 (81). 23-30.
11. Pronina L. N., Mazilkin A. A., Aristova I. M. Softening Processes In Single- Crystal Tungsten Ribbons // Physics of the Solid State. 1998. 40 (3). 498-502.
Review
For citations:
Mikhailov D.L., Ermishkin V.A., Minina N.A. Comparative analysis of deformation kinetics of structures of nickel alloys Х30Н60М9 and Х23Н65М13 according to the results of tensile tests. Title in english. 2024;(3(137)):436-452. (In Russ.) https://doi.org/10.34680/2076-8052.2024.3(137).436-452