ISSN 0430-6252. Physicochemical Mechanics of Materials. 2022.
Volume 58, Issue 3

Comparison of the corrosion resistance of welded and brazed joints from galvanized 08Yu steel

Keywords

08Yu galvanized steel, SMT-brazing, plasma, MAG-welding, corrosion resistance, electrochemical heterogeneity, corrosion potential, filler wire, zinc filler metal.

Cite as

Maksymova S. V., Zvolinsky I. V., Nyrkova L. I., and Osadchuk S. O. Comparison of the corrosion resistance of welded and brazed joints from galvanized 08Yu steel. Physico­chemical Mechanics of Materials. 2022. 58(2), 026-032.

Abstract

Corrosion resistance of the permanent joints made of 08Yu steel obtained by different methods: MAG (Metal Active Gas) welding, TIG (Tungsten Inert Gas) brazing, plasma brazing and brazing using the CMT (Cold Metal Transfer) process is studied. It has been established that the brazing using the CMT-process provides the highest electrochemical homogeneity of the permanent joint and high corrosion resistance of the brazed joint in the conditions under study.

References

  1. Killing, “Plasma brazing – advantages and disadvantages compared with MIG brazing,”  Cut.,4, No. 3, 147–149 (2005).
  2. P. Sejc, “MAG zvaranie pozinkovanych plechov v ochrannom plyne CO2a Ar+18%CO2,” Zvarac, VII, No. 3, 8–13 (2010).
  3. H. Haller, “Mettall-Inertgasloten von verzinkten Stahlprofilen,” Der Praktiker Schweistechnik und Mehr.,No. 10, 377–379 (2002).
  4. B. Walduck, “Using plasmabraze in car body fabrication,” Weld. Met. Fabr.,67, No. 8, 11–15 (1999).
  5. S. V. Maksymova, I. V. Zvolinskyy, V. V. Yurkiv, S. M. Minakov, and V. V. Lysak, “Residual stresses in thin-sheet galvanized steel,” Paton Weld. J.,No. 9, 31–35 (2020).
  6. B. Bouaifi, “Low-heat process enhances joining of coated sheet metals,” Weld. J.,82(1), 26–30 (2003).
  7. J. Matusiak, B. Czwornog, and T. Pfeifer, “Welding and brazing-welding of heat-sensitive materials and elements by the MIG/MAG low-energy methods,” Svarshchik,No. 4, 26–31 (2008).
  8. A. G. Potap’evskii, Welding in Shielding Gases with Consumable Electrodes. Part 1. Welding in Active Gases[in Russian], Ékotekhnologiya, Kyiv (2007).
  9. O. T. Tsyrul’nyk, V. A. Voloshyn, D. Yu. Petryna, V. I. Hredil’, and O. I. Zvirko, “Degradation of properties of the metal of welded joints in operating gas mains,” Mater. Sci.,46, No. 5, 628–632 (2011).
  10. V. A. Voloshyn, “Cyclic corrosion crack resistance of an exploited welded joint of 17G1S pipe steel,” Mater. Sci.,56, No. 1, 119–124 (2020).
  11. E. V. Proskurkin, “Protective zinc coatings for severe corrosion-erosion operating conditions,” Territor. Neftegaz,No. 9, 42–51 (2007).
  12. S. Sepper, P. Peetsalu, P. Kulu, M. Saarna, and V. Mikli, “The role of silicon in the hot dip galvanizing process,” Proc. Est. Acad. Sci.,65, No. 2, 159–165 (2016)
  13. Т. В. Massalski, Binary Alloy Phase Diagrams,ASM International, Materials Park, Ohio (1990).
  14. I. L. Rozenfel’d, Corrosion and Corrosion Protection of Metals (Local Corrosion Processes) [in Russian], Metallurgiya, Moscow (1969).