Skip to main content
Top
Published in: Metallurgist 9-10/2023

24-02-2023

Effect of Deformation by Ecap-Drawing Method on Change in Steel-Aluminum Wire Properties

Authors: I. E. Volokitina, A. B. Naizabekov, A. V. Volokitin

Published in: Metallurgist | Issue 9-10/2023

Log in

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

The change in the microstructure of steel-aluminum wire during deformation by the equal-channel angular pressing – drawing method is considered. Deformation is performed at room temperature in two passes. It is shown that wire strength properties, even after two deformation passes, increase markedly compared to the initial condition, ultimate strength (σf) increases from 370 MPa in the initial state to 690 MPa after the second pass, and yield strength (σ0.2) increases from 260 to 465 MPa after the second pass.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
1.
go back to reference K. Lee, H. Jun, and Y. Lee, “Fabrication of bimetallic rods consist of a Zr-based BMG and a crystalline copper by co-extrusion,” Intermetallics, 18, 1958–1963 (2010).CrossRef K. Lee, H. Jun, and Y. Lee, “Fabrication of bimetallic rods consist of a Zr-based BMG and a crystalline copper by co-extrusion,” Intermetallics, 18, 1958–1963 (2010).CrossRef
2.
go back to reference H. Dyja, L. Lesik, A. Milenin, and S. Mróz, “Theoretical and experimental analysis of stress and temperature distributions during the process of rolling bimetallic rods,” J. Mater. Process. Technol., 125–126, 731–735 (2002).CrossRef H. Dyja, L. Lesik, A. Milenin, and S. Mróz, “Theoretical and experimental analysis of stress and temperature distributions during the process of rolling bimetallic rods,” J. Mater. Process. Technol., 125–126, 731–735 (2002).CrossRef
3.
go back to reference C.-Y. Chen, H.-L. Chen, and W.-S. Hwang, “Influence of interfacial structure development on the fracture mechanism and bond strength of aluminum/copper bimetal plate,” Materials Transaction, 47, 1232–1239 (2006).CrossRef C.-Y. Chen, H.-L. Chen, and W.-S. Hwang, “Influence of interfacial structure development on the fracture mechanism and bond strength of aluminum/copper bimetal plate,” Materials Transaction, 47, 1232–1239 (2006).CrossRef
4.
go back to reference A. V. Zinoviev, A. N. Koshmin, and A. Ya. Chasnikov, “Effect of continuous pressing process parameters on microstructure and mechanical property formation of alloy M1 round cross section bars,” Metallurg, No. 4, 16-23 (2019). A. V. Zinoviev, A. N. Koshmin, and A. Ya. Chasnikov, “Effect of continuous pressing process parameters on microstructure and mechanical property formation of alloy M1 round cross section bars,” Metallurg, No. 4, 16-23 (2019).
5.
go back to reference I. E. Volokitina and A. V. Volokitin, “Evolution of the microstructure and mechanical properties of copper during the pressing–drawing process,” Physics of Metals and Metallography, 119, 917–921 (2018).CrossRef I. E. Volokitina and A. V. Volokitin, “Evolution of the microstructure and mechanical properties of copper during the pressing–drawing process,” Physics of Metals and Metallography, 119, 917–921 (2018).CrossRef
6.
go back to reference N. Vasilyeva, E. Fedorova, and A. Kolesnikov, “Big data as a tool for building a predictive model of mill roll wear,” Symmetry, 13, No. 5, 859 (2021). N. Vasilyeva, E. Fedorova, and A. Kolesnikov, “Big data as a tool for building a predictive model of mill roll wear,” Symmetry, 13, No. 5, 859 (2021).
7.
go back to reference P. Eslami and A. Karimi Taheri, “An investigation on diffusion bonding of aluminum to copper using equal channel angular extrusion process,” Materials Letters, 65, 1862–1864 (2011). P. Eslami and A. Karimi Taheri, “An investigation on diffusion bonding of aluminum to copper using equal channel angular extrusion process,” Materials Letters, 65, 1862–1864 (2011).
8.
go back to reference M. V. Chukin, A. G. Korchunov, É. M. Golubchik, M. A. Polyakova, and A. E. Gulin, “Analysis of continuous deformation nanostructuring of wire using a production inheritance concept,” Vestn. MGTU im G. I. Nosova, No. 4, 61-65 (2012). M. V. Chukin, A. G. Korchunov, É. M. Golubchik, M. A. Polyakova, and A. E. Gulin, “Analysis of continuous deformation nanostructuring of wire using a production inheritance concept,” Vestn. MGTU im G. I. Nosova, No. 4, 61-65 (2012).
9.
go back to reference A. Boikov, V. Payor, R. Savelev, and A. Kolesnikov, “Synthetic data generation for steel defect detection and classification using deep learning,” Symmetry, 13, No. 7, 1176(2021). A. Boikov, V. Payor, R. Savelev, and A. Kolesnikov, “Synthetic data generation for steel defect detection and classification using deep learning,” Symmetry, 13, No. 7, 1176(2021).
10.
go back to reference G. Raab, R. Valiev, T. Lowe, and Y. Zhu, “Continuous processing of ultrafine grained A1 by ECAP-Conform,” Mater. Sci. and Eng., 382, 30–34 (2004).CrossRef G. Raab, R. Valiev, T. Lowe, and Y. Zhu, “Continuous processing of ultrafine grained A1 by ECAP-Conform,” Mater. Sci. and Eng., 382, 30–34 (2004).CrossRef
11.
go back to reference R. Valiev, Y. Estrin, Z. Horita, T. Langdon, M. Zehetbauer, and Y. Zhu, “Producing bulk ultrafine-grained materials by severe plastic deformation: ten years later,” JOM, 68, 1216–1226 (2016).CrossRef R. Valiev, Y. Estrin, Z. Horita, T. Langdon, M. Zehetbauer, and Y. Zhu, “Producing bulk ultrafine-grained materials by severe plastic deformation: ten years later,” JOM, 68, 1216–1226 (2016).CrossRef
12.
go back to reference A. Nayzabekov and I. Volokitina, “Effect of the initial structural state of Cr–Mo high-temperature steel on mechanical properties after equal-channel angular pressing,” Physics of Metals and Metallography, 120, No. 2, 177–183 (2019).CrossRef A. Nayzabekov and I. Volokitina, “Effect of the initial structural state of Cr–Mo high-temperature steel on mechanical properties after equal-channel angular pressing,” Physics of Metals and Metallography, 120, No. 2, 177–183 (2019).CrossRef
13.
go back to reference A. Zhilyaev and T. Langdon, “Using high-pressure torsion for metal processing: Fundamentals and applications,” Progress in Mater. Sci., 53, 893–979 (2008).CrossRef A. Zhilyaev and T. Langdon, “Using high-pressure torsion for metal processing: Fundamentals and applications,” Progress in Mater. Sci., 53, 893–979 (2008).CrossRef
14.
go back to reference Z. Horita, T. Fujinami and T. Langdon, “The potential for scaling ECAP: Effect of sample size on grain refinement and mechanical properties,” Mat. Sci. and Eng. A, 318, No. 1–2, 34–41 (2001).CrossRef Z. Horita, T. Fujinami and T. Langdon, “The potential for scaling ECAP: Effect of sample size on grain refinement and mechanical properties,” Mat. Sci. and Eng. A, 318, No. 1–2, 34–41 (2001).CrossRef
15.
go back to reference P. Chaudhury, B. Cherukuri, and R. Srinivasan, “Scaling up of equal-channel angular pressing and its effect on mechanical properties, microstructure, and hot workability of AA 6061,” Mater. Sci. Eng. A., 410–411, 316–318 (2005).CrossRef P. Chaudhury, B. Cherukuri, and R. Srinivasan, “Scaling up of equal-channel angular pressing and its effect on mechanical properties, microstructure, and hot workability of AA 6061,” Mater. Sci. Eng. A., 410–411, 316–318 (2005).CrossRef
16.
go back to reference I. E. Volokitina, A. V. Volokitin, A. B. Naizabekov, and S. N. Lezhnev, “Change in structure and mechanical properties of grade A0 aluminum during implementation of a combined method of ECAE–drawing deformation,” Metallurgist, 63, No. 9–10, 978–983 (2020).CrossRef I. E. Volokitina, A. V. Volokitin, A. B. Naizabekov, and S. N. Lezhnev, “Change in structure and mechanical properties of grade A0 aluminum during implementation of a combined method of ECAE–drawing deformation,” Metallurgist, 63, No. 9–10, 978–983 (2020).CrossRef
17.
go back to reference S. Lezhnev, A. Naizabekov, A. Volokitin, and I. E. Volokitina, “New combined process pressing-drawing and impact on properties of deformable aluminum wire,” Procedia Eng., 81, 1505–1510 (2014).CrossRef S. Lezhnev, A. Naizabekov, A. Volokitin, and I. E. Volokitina, “New combined process pressing-drawing and impact on properties of deformable aluminum wire,” Procedia Eng., 81, 1505–1510 (2014).CrossRef
18.
go back to reference I. Volokitina, A. Naizabekov, E. Panin, and A. Volokitin, “Effect of ECAP-drawing on the microstructure of a bimetallic wire,” Metallurgist, 65, No. 7–8, 769–774 (2021).CrossRef I. Volokitina, A. Naizabekov, E. Panin, and A. Volokitin, “Effect of ECAP-drawing on the microstructure of a bimetallic wire,” Metallurgist, 65, No. 7–8, 769–774 (2021).CrossRef
Metadata
Title
Effect of Deformation by Ecap-Drawing Method on Change in Steel-Aluminum Wire Properties
Authors
I. E. Volokitina
A. B. Naizabekov
A. V. Volokitin
Publication date
24-02-2023
Publisher
Springer US
Published in
Metallurgist / Issue 9-10/2023
Print ISSN: 0026-0894
Electronic ISSN: 1573-8892
DOI
https://doi.org/10.1007/s11015-023-01436-0

Other articles of this Issue 9-10/2023

Metallurgist 9-10/2023 Go to the issue

Premium Partners