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Research Articles

Pulsed thermo-induction-dynamic welding and pressing of dissimilar materials

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Pages 128-134 | Received 25 Jul 2022, Accepted 24 Mar 2023, Published online: 12 Apr 2023

References

  • Baranov Y, Troitsky OA, Avraamov Y, et al. Physical foundations of electropulse and electroplastic processing and new materials. Moscow: Moscow State Industrial University (Russia); 2001.
  • Medvedev DE, Gorshkova OO. Magnetic pulse welding. Proceedings of the II International Scientific and Practical Conference; 2018, April 20–21. Surgut (Russia): Tyumen Industrial University; 2018.
  • Krivonos Y, Kebets AV, Buchik T, et al. Modern methods and technologies for the creation and processing of materials. 2020. 48–55.
  • Grigor’ev EG. Advanced methods for consolidation of powder materials by impulse electromagnetic fields. Synthesis and Consolidation of Powder Materials: Proceedings of the International Conference. 2018, October 23–26. Chernogolovka (Russia): Institute of Physics Publishing; 2019.
  • Vasetsky Yu M, Kondratenko IP. Electromagnetic field of an inductor for local electric impulse action on metal products. 2020;4:11–14.
  • Zhelobodko BA, Ryngach NA. Modernization of the design of the inductor for magnetic pulse processing. The science. Industry. Defense: Proceedings of the XVII All-Russian Scientific and Technical Conference. 2016, April 20–22. Novosibirsk, (Russia): Новосибирский государственный технический университет; 2016.
  • Grigoryev EG, Nescoromniy SV, Strizhakov EL. Superhard modes of capacitor welding during the formation of joints from dissimilar materials. Procedia Struct Integrity. 2020;30:33–39.
  • Strizhakov EL, Nescoromniy SV, Vinogradov VG, et al. High-voltage welding of dissimilar materials, V International Conference “Laser, Plasma Research and Technologies”. 2019, February 12–15; Moscow (Russia): National Research Nuclear University “Moscow Engineering Physics Institute”; 2019.
  • Grigoryev EG. Advanced methods for consolidation of powder materials by impulse electromagnetic fields. IOP Conference Series: Materials Science and Engineering. 2018, October 23–26; Chernogolovka (Russia): Institute of Physics Publishing; 2019.
  • Vinogradov VG, Strizhakov EL, Nescoromniy SV. Obtaining joints of dissimilar materials by electric pulse welding – pressing. Mashinostroenie. 2020;8(1):26–31.
  • Strizhakov EL, Nescoromniy SV, Vinogradov VG. Features of the processes of electropulse action when joining dissimilar materials using powder compositions as a binder. New Materials: Promising Technologies: Collection of abstracts from the 17th International School – Conference for Young Scientists and Specialists., 2019; November 05–08; Moscow (Russia): National Research Nuclear University “Moscow Engineering Physics Institute”; 2019.
  • Nescoromniy SV, Strizhakov EL, Ageev SO, et al. Don State Technical University. A method for obtaining compounds of dissimilar electrically conductive materials and a device for its implementation. Russian Federation patent 2551329 C1. 2015. May 20.
  • Baysangurova AA, Isaeva PM, Akhmetkhanova K. Phase formation in systems in the solid phase during crystallization from melts. Eurasian Scient Assoc. 2020;3–6(61):367–370.
  • Minko DV, Kuznechik OO. Photoemission method for measuring temperature during electropulse sintering of powders of refractory metals. Dev Measure Methods. 2012;1(4):92–98.
  • Gorsky AN, Sergeenkov NA. Calculation of static electric and magnetic fields of various geometries. Electro Electr Equip Transport. 2018;3:17–22.
  • Vinogradov VG, Strizhakov EL, Nescoromniy SV. Obtaining joints of dissimilar materials by electric pulse welding – pressing. Mech Eng. 2020;8(1):26–31.

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