Study of the influence of the increased carbon content in electrodes on structure and properties of the welding seam during welding of 110G13 steel
DOI:
https://doi.org/10.15587/2706-5448.2021.237358Keywords:
welded joints, Gadfield steel, arc welding, hot cracks, coated electrode, weld metal, heat-affected zone, electrode rod, manganese assimilation, welding currentAbstract
The object of research is the effect of the carbon-forming component of coated electrodes for welding and surfacing of Gadfield steel (110G13L and analogs) on the structure and properties of the weld.
One of the most problematic areas in the welding and surfacing of high-carbon steel is the high irregularity of the rod and coating melting rates. Therefore, the non-melted part of the coating is literally poured into the weld pool, which leads to significant chemical and structural inhomogeneity of the welded metal. The main hypothesis of the study is the assumption that it is possible to increase the homogeneity of the deposited metal by changing the conditions for the transition of carbon from the electrode to the weld pool by using an electrode rod made of carbon steel.
In the course of the study, electrode rods with different carbon contents were used. With an increase in the carbon content in the composition of the electrode rod, the fluidity of the drops increased, which contributed to a decrease in the strength of the welding current without harm to the welding and technological characteristics. This allows to reduce the generation of heat in the base metal, that is an effective measure to prevent hot cracks in the weld metal and heat affected zone
Studies of the composition of the electrode metal droplets and the weld material showed that with an increase in the carbon content in the electrode rod from 0.08 % to 0.8 %, the carbon content in the droplets increases from 0.3 % to 0.97 %. The carbon content in the weld metal is 1.1 %. The assimilation of manganese by a drop increases with an increasing of coating and the droplet interaction time. A significant increasing in the rate of coating melting was obtained. This is due to the fact that the concomitant decrease in the content of graphite in the coating contributes to a decrease in the refractoriness of the electrode coating.
The use of high carbon steels for the manufacturing of electrode rods for welding and surfacing of Gadfield steel improves the properties of the welded metal and sanitary and hygienic parameters.
References
- Frumin, I. I. (1961). Avtomaticheskaya elektrodugovaya naplavka. Kharkiv: Metallurgizdat, 421.
- Kim, H. J., Kang, B. Y. (2000). Мicrostructural Characteristics of Steel Weld Metal. Journal of KWS, 18 (5), 565–572.
- Ershov, G. S., Poznyak, L. A. (1998). Strukturoobrazovanie i formirovanie svoystv staley i splavov. Kyiv: Naukova dumka, 381.
- Kondratyuk, S. E., Kasatkin, O. G. (1987). Razrushenie litoy margantsovistoy stali. Kyiv: Naukova dumka, 148.
- Han, K., Yoo, J., Lee, B., Han, I., Lee, C. (2016). Hot ductility and hot cracking susceptibility of Ti-modified austenitic high Mn steel weld HAZ. Materials Chemistry and Physics, 184, 118–129. doi: http://doi.org/10.1016/j.matchemphys.2016.09.032
- Kuchuk-Yatsenko, S. I., Shvets, Yu. V., Dumchev, E. A. et. al. (2005). Kontaktnaya stykovaya svarka zheleznodorozhnykh krestovin s relsovymi okonchaniyami cherez promezhutochnuyu vstavku. Avtomaticheskaya svarka, 1, 6–9.
- Jorge, J. C. F., Souza, L. F. G. d., Mendes, M. C., Bott, I. S., Araújo, L. S., Santos, V. R. do. et. al. (2021). Microstructure characterization and its relationship with impact toughness of C–Mn and high strength low alloy steel weld metals – a review. Journal of Materials Research and Technology, 10, 471–501. doi: http://doi.org/10.1016/j.jmrt.2020.12.006
- Yang, J., Dong, H., Xia, Y., Li, P., Hao, X., Wang, Y. et. al. (2021). Carbide precipitates and mechanical properties of medium Mn steel joint with metal inert gas welding. Journal of Materials Science & Technology, 75, 48–58. doi: http://doi.org/10.1016/j.jmst.2020.10.029
- Yoo, J., Han, K., Park, Y., Lee, C. (2014). Effect of silicon on the solidification cracking behavior and metastable carbide formation in austenitic high Mn steel welds. Materials Chemistry and Physics, 148 (3), 499–502. doi: http://doi.org/10.1016/j.matchemphys.2014.08.053
- Wang, H. H., Meng, L., Luo, Q., Sun, C., Li, G. Q., Wan, X. L. (2020). Superior cryogenic toughness of high-Mn austenitic steel by welding thermal cycles: The role of grain boundary evolution. Materials Science and Engineering: A, 788, 139573. doi: http://doi.org/10.1016/j.msea.2020.139573
- Park, G., Jeong, S., Kang, H., Lee, C. (2018). Improvement of circumferential ductility by reducing discontinuities in a high-Mn TWIP steel weldment. Materials Characterization, 139, 293–302. doi: http://doi.org/10.1016/j.matchar.2018.03.009
- Jeong, S., Lee, Y., Park, G., Kim, B., Moon, J., Park, S.-J., Lee, C. (2021). Phase transformation and the mechanical characteristics of heat-affected zones in austenitic Fe–Mn–Al–Cr–C lightweight steel during post-weld heat treatment. Materials Characterization, 177, 111150. doi: http://doi.org/10.1016/j.matchar.2021.111150
- Das, S. R., Shyamal, S., Sahu, T., Kömi, J. I., Chakraborti, P. C., Porter, D. A. et. al. (2021). On the mechanism of cross-slip induced dislocation substructure formation in an high-Mn steel. Materialia, 15, 101042. doi: http://doi.org/10.1016/j.mtla.2021.101042
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2021 Volodymyr Pashynskyi, Igor Boyko
This work is licensed under a Creative Commons Attribution 4.0 International License.
The consolidation and conditions for the transfer of copyright (identification of authorship) is carried out in the License Agreement. In particular, the authors reserve the right to the authorship of their manuscript and transfer the first publication of this work to the journal under the terms of the Creative Commons CC BY license. At the same time, they have the right to conclude on their own additional agreements concerning the non-exclusive distribution of the work in the form in which it was published by this journal, but provided that the link to the first publication of the article in this journal is preserved.