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2024 №06 (04) DOI of Article
10.37434/tpwj2024.06.05
2024 №06 (06)

The Paton Welding Journal 2024 #06
The Paton Welding Journal, 2024, #6, 38-44 pages

Producing of coaxial joints of dissimilar metals with the help of explosion

A.G. Bryzgalin1, E.D. Pekar1, S.D. Ventsev1, M.O. Pashchin1, P.S. Shlionskyi2

1E.O. Paton Electric Welding Institute of the NASU. 11 Kazymyr Malevych Str., 03150, Kyiv, Ukraine
2Liaoning Xin Huayang Weiye Equipment Manufacturing company Ltd № 1 Road, Tieling high-tech industrial development zone, Liaoning provice, China. E-mail: shlensk@ukr.net

Abstract
Unlike different type of fusion welding, explosion welding allows joining metals and alloys in almost any combinations, which provides the possibility of manufacturing products with a combination of service properties of the used materials at a high level of strength, tightness, fatigue strength, etc. Except of bimetals produced in fairly large volumes for chemical and oil equipment, explosion welding is used to manufacture products with special characteristics for different industries. It is possible to attribute the production of coaxial joints of different metals (welding occurs along generatrices of axisymmetric co-axial pipes), which are more complex and interesting from a scientific point of view, and more economical in practice than alternative methods of their production, as a special class of tasks. In some cases, dissimilar joint can be created by explosion crimping without welding the elements to be joined. This work presents a number of technological processes for manufacture of coaxial products developed at the PWI, using both explosion welding and crimping. The presented developments testify that a wide range of practical tasks can be solved with the help of explosion.
Keywords: coaxial joints, explosion welding, bimetal, adapter, rod, coupling, permanent joint

Received: 15.02.2024
Received in revised form: 20.05.2024
Accepted: 01.07.2024

References

1. Crossland, B. Bahrani, A.S. Willia, J.D. Shribman, V. (1967) Explosive welding of tubes to tubeplates. Welding and Metal Fabrication, 35, 88-94.
2. Harry, J. Addison, Jr. James, F. Kowalick, Winston W. Cavtll (1969) Explosion welding of cylindrical shapes. Report A69-3 of the department of the army frankford arsenal, Philadelphia. https://doi.org/10.21236/AD0694359
3. Yong, Yu, Honghao, Ma, Kai, Zhao et al. (2017) Study on Underwater Explosive Welding of Al-Steel Coaxial Pipes. Central European J. of Energetic Materials, 14 (1), 251-265. https://doi.org/10.22211/cejem/68696
4. Moujin Lin, Junjie Liao, Bing Xue, Dingjun Xiao, Jiangliang Li, Jing Ling (2023) Expansion velocity of metal pipe in underwater explosive welding. J. Mater. Proc. Technol., 319, October 2023, 118071. https://doi.org/10.1016/j.jmatprotec.2023.118071
5. Sina Gohari Rad, Siamak Mazdak, Ali Alijani (2023) Proposing an analytical model for predicting the dimensions of interfacial waves produced in the explosive welding of coaxial cylinders. Thin-Walled Structures, 190, September 2023, 110982. https://doi.org/10.1016/j.tws.2023.110982
6. DSTU EN 13601:2010 Copper and copper alloys. Copper rod, bar and wire for general electrical purposes. Specifications.
7. Bryzgalin, A.G., Dobrushin, L.D., Shlensky, P.S. et al. (2015) Manufacture of coaxial copper-aluminium rods using explosion welding and drawing. The Paton Welding J., 3-4, 69-73. https://doi.org/10.15407/tpwj2015.04.10
8. Lysak, V.I., Kuzmin, S.V. (2005) Explosion welding. Moscow, Mashinostroenie [in Russian].
9. Pervukhin, L.B., Shishkin, T.A., Pervukhina, O.L. (2012) Specificity of explosive welding in marginal zones. In: Proc. of Symp. on Explosive Production of New Materials: Science, Technology, Business, and Innovations. Moscow, Torus Press Ltd.
10. Pashchin, M.O., Shlonskyi, P.S., Bryzgalin, A.G. et al. (2021) Features of formation of structure of coaxial joints of copper and aluminium in explosion welding with vacuuming of welding gap. The Paton Welding J., 2, 2-7. https://doi.org/10.37434/as2021.02.01
11. Method of manufacturing of bimetal pipe adapters using explosion welding. Appl. for invent. No. 2022 02799 from 05.08.2022.
12. Shlyonskyi, P.S. (2020) Explosion welding of copperaluminium pipes by the "reverse scheme". The Paton Welding J., 8, 51-53. https://doi.org/10.37434/as2020.08.08
13. Bryzgalin, A.G., Pekar, E.D., Shlensky, P.S. et al. (2017) Application of explosion welding for manufacture of trimetallic transition pieces of cryomodules of linear collider. The Paton Welding J., 12, 34-39. https://doi.org/10.15407/as2017.12.04
14. Basti, A., Bedeschi, F., Bryzgalin, A. et al. (2020) Upgrade of the ILC cryomodule. arXiv.org > physics > arXiv:2004.05948. https://doi.org/10.1134/S1063779620060027
15. Sabirov, B., Basti, A., Bedeschi, F. et. al. (2016) High Technology Application to Modernization of International Electron-Positron Linear Collider (ILC). In: Proc. of Int. Conf. on New Trends in High-Energy Physics, Montenegro.
16. Bryzgalin, A.G., Shlyonskyi, P.S., Pekar, E.D. et al. (2022) Joining building rebars using couplings compressed by explosion. The Paton Welding J., 11, 35-38. https://doi.org/10.37434/as2022.11.05
17. DSTU B V. 2.6-169:2011 Welded joints of rebars and embedded products of concrete structures.
18. Lobanov, L.M., Illarionov, S.Yu., Dobrushin, L.D. et al. (2012) Repair explosion cladding of threaded channel of car axles. The Paton Welding J., 2, 42-46.

Suggested Citation

A.G. Bryzgalin, E.D. Pekar, S.D. Ventsev, M.O. Pashchin, P.S. Shlionskyi (2024) Producing of coaxial joints of dissimilar metals with the help of explosion. The Paton Welding J., 06, 38-44.