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Erschienen in: Metallurgist 5-6/2022

28.09.2022

Analysis of Factors Determining Aspects of Deformation and Hardening of Bronze BrNHK2.5–0.7–0.6

verfasst von: V. A. Lenina, G. A. Vorobyova, E. Yu. Remshev

Erschienen in: Metallurgist | Ausgabe 5-6/2022

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Abstract

This article discusses the influence of heat treatment (HT) on the formation of the structure and mechanical properties of nickel–chrome–silicon bronze BrNHK2.5–0.7–0.6. It also presents the results of studies on increasing the alloy strength and elasticity by optimizing HT modes. The data reveal the significant influence of the pre-aging treatment and aging modes on the structure and the possibility of additional improvement on the mechanical properties of the wire from BrNHK2.5–0.7–0.6.

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Literatur
1.
Zurück zum Zitat N. T. Kareva, Yu. D. Koryagin, and G. I. Medvedeva, “Influence of different aging modes on the properties of the BrNHK alloy,” Izv. Vyssh. Ucheb. Zav. Tsvet. Metallurg., No. 6, 64–68 (1985). N. T. Kareva, Yu. D. Koryagin, and G. I. Medvedeva, “Influence of different aging modes on the properties of the BrNHK alloy,” Izv. Vyssh. Ucheb. Zav. Tsvet. Metallurg., No. 6, 64–68 (1985).
2.
Zurück zum Zitat N. T. Kareva and Yu. D. Koryagin, “Influence of heat treatment modes on the structure of BrNHK bronze,” Vest. YUUrGU. Ser. “Metallurgiya”, 15, No. 4, 84–88 (2015). N. T. Kareva and Yu. D. Koryagin, “Influence of heat treatment modes on the structure of BrNHK bronze,” Vest. YUUrGU. Ser. “Metallurgiya”, 15, No. 4, 84–88 (2015).
3.
Zurück zum Zitat A. K. Nikolaev, “Dispersion hardening as an effective method of synthesis of structural alloys,” RITM, No. 3, 31–35 (2011). A. K. Nikolaev, “Dispersion hardening as an effective method of synthesis of structural alloys,” RITM, No. 3, 31–35 (2011).
4.
Zurück zum Zitat G. A. Danilin, E. Yu. Remshev, G. A. Vorob’eva, M. Yu. Silaev, et.al., “Ensuring of operational reliability of elastic elements by acoustic methods,” Metallurg, No. 3, 48–52 (2015). G. A. Danilin, E. Yu. Remshev, G. A. Vorob’eva, M. Yu. Silaev, et.al., “Ensuring of operational reliability of elastic elements by acoustic methods,” Metallurg, No. 3, 48–52 (2015).
5.
Zurück zum Zitat D. A. Bespalov, “Investigation of the possibilities of the BrNHK alloy for the manufacture of helical springs,” Metalloobrabotka, No. 6 (102), 24–29 (2017). D. A. Bespalov, “Investigation of the possibilities of the BrNHK alloy for the manufacture of helical springs,” Metalloobrabotka, No. 6 (102), 24–29 (2017).
6.
Zurück zum Zitat G. A. Vorobyeva, E. Yu. Remshev, G. A. Danilin, and D.A. Bespalov, “Influence of thermal and aerothermoacoustic treatment regimes on the structure of BrNHK bronze,” Metallurg, No. 3, 89–94 (2018). G. A. Vorobyeva, E. Yu. Remshev, G. A. Danilin, and D.A. Bespalov, “Influence of thermal and aerothermoacoustic treatment regimes on the structure of BrNHK bronze,” Metallurg, No. 3, 89–94 (2018).
7.
Zurück zum Zitat M. Yu. Silaev, E. A. Eskova, D. S. Gerus, and E. Yu. Remshev, “Application of the acoustic emission method in determining the mechanical characteristics of the BrNHK2.5-0.6-0.7 wire in the production of elastic elements,” Vest. Moskovsk. Aviats. Inst., 26, No. 2, 182–192 (2019). M. Yu. Silaev, E. A. Eskova, D. S. Gerus, and E. Yu. Remshev, “Application of the acoustic emission method in determining the mechanical characteristics of the BrNHK2.5-0.6-0.7 wire in the production of elastic elements,” Vest. Moskovsk. Aviats. Inst., 26, No. 2, 182–192 (2019).
8.
Zurück zum Zitat V. A. Lenina, G. A. Vorobyova, E. Yu. Remshev, and Z. N. Rasulov, “Patterns of the formation of the phase composition, structure, and properties of the BrNHK2.5-0.7-0.6 alloy during thermal and aerothermoacoustic processing,” Vest. Mashinostroyen., No. 8, 71–75 (2021). V. A. Lenina, G. A. Vorobyova, E. Yu. Remshev, and Z. N. Rasulov, “Patterns of the formation of the phase composition, structure, and properties of the BrNHK2.5-0.7-0.6 alloy during thermal and aerothermoacoustic processing,” Vest. Mashinostroyen., No. 8, 71–75 (2021).
9.
Zurück zum Zitat Zh. P. Pastukhova and A. G. Rakhshtad, Spring Alloys of Non-ferrous Metals [in Russian], 2nd ed., Metallurgiya, Moscow (1983). Zh. P. Pastukhova and A. G. Rakhshtad, Spring Alloys of Non-ferrous Metals [in Russian], 2nd ed., Metallurgiya, Moscow (1983).
10.
Zurück zum Zitat V. S. Zolotorevsky, Mechanical Properties of Metals [in Russian], MISiS, Moscow (1998). V. S. Zolotorevsky, Mechanical Properties of Metals [in Russian], MISiS, Moscow (1998).
11.
Zurück zum Zitat V. E. Panin, L. B. Zuev, and V. I. Danilov, “Plastic deformation as a wave process,” Dokl. Acad. Nauk SSSR, 308, 1375–1379 (1989). V. E. Panin, L. B. Zuev, and V. I. Danilov, “Plastic deformation as a wave process,” Dokl. Acad. Nauk SSSR, 308, 1375–1379 (1989).
12.
Zurück zum Zitat L. B. Zuev, V. I. Danilov, and V. V. Gorbatenko, “Autowaves of localized plastic deformation,” JTF, 65, No. 5, 91–103 (1995). L. B. Zuev, V. I. Danilov, and V. V. Gorbatenko, “Autowaves of localized plastic deformation,” JTF, 65, No. 5, 91–103 (1995).
13.
Zurück zum Zitat L. B. Zuev and V. I. Danilov, “On the nature of large-scale correlations in plastic flow,” FTT, 39, No. 8, 1399–1403 (1997). L. B. Zuev and V. I. Danilov, “On the nature of large-scale correlations in plastic flow,” FTT, 39, No. 8, 1399–1403 (1997).
14.
Zurück zum Zitat V. E. Panin and V. E. Egorushkin, “Deformed solid body as a nonlinear hierarchically organized system,” Fiz. Mezomeh., 14, No. 3, 7–26 (2011). V. E. Panin and V. E. Egorushkin, “Deformed solid body as a nonlinear hierarchically organized system,” Fiz. Mezomeh., 14, No. 3, 7–26 (2011).
15.
Zurück zum Zitat G. A. Malygin, “Processes of self-organization of dislocations and plasticity of crystals,” UFN, 169, No. 9, 979–1010 (1999). CrossRef G. A. Malygin, “Processes of self-organization of dislocations and plasticity of crystals,” UFN, 169, No. 9, 979–1010 (1999). CrossRef
16.
Zurück zum Zitat L. B. Zuev, V. I. Danilov, and V. V. Gorbatenko, “Autowaves of localized plastic deformation,” JTF, 65, No. 5, 91–103 (1995). L. B. Zuev, V. I. Danilov, and V. V. Gorbatenko, “Autowaves of localized plastic deformation,” JTF, 65, No. 5, 91–103 (1995).
17.
Zurück zum Zitat D. L. Merson, Physical Nature of Acoustic Emission During Deformation Processes in Metals and Alloys [in Russian] , Thesis Research of PhD in Physics and Mathematics, Tolyatti, 327 (2001). D. L. Merson, Physical Nature of Acoustic Emission During Deformation Processes in Metals and Alloys [in Russian] , Thesis Research of PhD in Physics and Mathematics, Tolyatti, 327 (2001).
18.
Zurück zum Zitat Z. I. Bibik and V. D. Natsik, “Acoustic emission during plastic deformation of high-purity aluminum polycrystals,” Metallofizika, 4, No. 4, 92–99 (1982). Z. I. Bibik and V. D. Natsik, “Acoustic emission during plastic deformation of high-purity aluminum polycrystals,” Metallofizika, 4, No. 4, 92–99 (1982).
19.
Zurück zum Zitat M. A. Krishtal, D. L. Merson, and V. P. Alekhin, “Propagation of plastic deformation over the sample cross section and acoustic emission under uniaxial tension of copper,” FMM, 63, No. 5, 1011–1016 (1987). M. A. Krishtal, D. L. Merson, and V. P. Alekhin, “Propagation of plastic deformation over the sample cross section and acoustic emission under uniaxial tension of copper,” FMM, 63, No. 5, 1011–1016 (1987).
20.
Zurück zum Zitat L. B. Zuev, B. S. Semukhin, and N. V. Zarikovskaya, “Restructuring of the autowave structure during deformation of polycrystalline aluminum,” JTF, 71, No. 5, 57–62 (2001). L. B. Zuev, B. S. Semukhin, and N. V. Zarikovskaya, “Restructuring of the autowave structure during deformation of polycrystalline aluminum,” JTF, 71, No. 5, 57–62 (2001).
Metadaten
Titel
Analysis of Factors Determining Aspects of Deformation and Hardening of Bronze BrNHK2.5–0.7–0.6
verfasst von
V. A. Lenina
G. A. Vorobyova
E. Yu. Remshev
Publikationsdatum
28.09.2022
Verlag
Springer US
Erschienen in
Metallurgist / Ausgabe 5-6/2022
Print ISSN: 0026-0894
Elektronische ISSN: 1573-8892
DOI
https://doi.org/10.1007/s11015-022-01361-8

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