Skip to main content
Log in

Methods and Technological Characteristics of Welding of Aluminum and Aluminum Alloy Machine Parts (Review)

  • Published:
Steel in Translation Aims and scope

Abstract

The welding characteristics of aluminum and aluminum alloy machine parts, as well as such welding methods as arc augmented laser welding, pulsed arc welding, gas tungsten pulsed arc butt welding, electrolytic plasma processing, friction stir welding are considered. The results of developments in this area are presented, the technical result of which is to improve the weld quality, the strength and durability of the welded joint.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Fig. 1.
Fig. 2.
Fig. 3.
Fig. 4.

REFERENCES

  1. Aleksandrov, V.M., Materialovedenie i tekhnologiya konstruktsionnykh materialov. Uchebnoe posobie (Materials Science and Technology of Structural Materials: Textbook), vol. 1: Materialovedenie. Standart tret’ego pokoleniya (Materials Science: Third-Generation Standard), Arkhangel’sk: Severnyi (Articheskii) Fed. Univ., 2015, pp. 200–219.

  2. Zorina, V.A., Vasil’ev, B.S., Dolgopolov, B.P., Dotsenko, G.N., et al., Remont dorozhnykh mashin, avtomobilei i traktorov. Uchebnik dlya stud. uchrezhdenii sred. prof. obrazovaniya (Repair of Road Machines, Cars, and Tractors: Textbook for Students of Higher Proffessional Schools), Moscow: Akademiya, 2005, 3rd ed.

  3. Turichin, G.A. and Tsibul’skij, I.A., Method of arc laser welding of aluminum and its alloys by consumable electrode, RF Patent no. 2440221, 2012.

  4. Zykov, S.A., Pavlova, V.I., Jakersberg, L.M., Zajtsev, D.V., and Poljakova, I.N., Method of aluminum alloys pulse-arc welding by consumable electrode, RF Patent no. 2553769, 2015.

  5. Alekseev, V.V., Ovchinnikov, V.V., Gureeva, M.A., Rjazantsev, V.I., and Ignat’ev, Ju.E., Method of pulse arc welding of butt joints of aluminum alloys with nonmelting electrode in inert gas, RF Patent no. 2373033, 2009.

  6. Gajsin, A.F., Method of electrolytetic-plasma welding of aluminum and its alloys, RF Patent no. 2625145, 2017.

  7. Karmanov, V.V., Kameneva, A.L., Vinokurov, N.V., and Karmanov, V.V., Method of friction welding with mixing of aluminum alloys, RF Patent no. 2634389, 2017.

  8. Gajsin, A.F., Gajsin, A.F., Bagautdinova, L.N., Gajsin, F.M., and Mastyukov, Sh.Ch., Method for electrolyte-plasma welding of nonferrous metals and their alloys, RF Patent no. 2751500, 2021.

  9. Tsarkov, A.V., Zybin, I.N., Trukhanov, K.Yu., Petrakov, A.A., Semes, V.V., and Karchagin, A.V., Method of friction welding with mixing of aluminum structures and tool for its implementation, RF Patent no. 2714008, 2020.

  10. Ostremann, F., Tekhnologiya primeneniya alyuminiya (Technology of Aluminum Application), Moscow: NP Apral, 2019, pp. 21–24.

Download references

Author information

Authors and Affiliations

Authors

Corresponding author

Correspondence to A. E. Vertii.

Ethics declarations

The author declares that he (she) has no conflicts of interest.

Additional information

Translated by A. Kolemesin

About this article

Check for updates. Verify currency and authenticity via CrossMark

Cite this article

Vertii, A.E. Methods and Technological Characteristics of Welding of Aluminum and Aluminum Alloy Machine Parts (Review). Steel Transl. 53, 227–231 (2023). https://doi.org/10.3103/S096709122303018X

Download citation

  • Received:

  • Revised:

  • Accepted:

  • Published:

  • Issue Date:

  • DOI: https://doi.org/10.3103/S096709122303018X

Keywords:

Navigation