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PTA-GMA hybrid welding of UHSS steel in structures of large-scale

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Purpose: An analysis of application possibilities for PTA-GMA hybrid welding in large-sized high- strength steel structures that require using particularly effective and high-performance technologies as related to quality and costs. Design/methodology/approach: Welded joints were made of S960QL steel by employing plasma and GMA hybrid welding by using various welding parameters. The tests were designed so that interrelations between particular welding technologies can be demonstrated. Macroscopic and microscopic examinations as well as hardness and tensile strength tests for welded joints were carried out. Findings: It has been shown that traditional welding methods SAW and GTA can be replaced by PTA-GMA hybrid welding. The obtained welded joints show different geometric features and hardness depending on welding technology used. Research limitations/implications: The description of welded joint structure and mechanical properties was based on welding toughened steels by using an innovative welding method and a filler that has been proposed. Practical implications: The parameters of plasma and GMA hybrid welding for industrial uses were established at the company Teleskop Sp. z o.o. The selected best welding technologies will be subject to welding procedure approval according to PN-EN 15614-1 and implemented into mass production. The information gained from toughened steel welding is an important basis for future research on metallurgical walkability by using high-performance methods of hybrid welding of large-sized structures. Originality/value: The problems associated with welding S960Q steels by using various welding technologies, including the use of an innovative GMA plasma hybrid welding method that is still at the initial stage of research work and there are no original references regarding the suitability of the a/m welding method for large-sized structures made of high-strength toughened steels were established. It has been shown that PTA-GMA hybrid welding has a significant effect on base metal structural changes resulting from a unique nature of combined heat sources of plasma and electric arc.
Rocznik
Strony
53--62
Opis fizyczny
Bibliogr. 15 poz.
Twórcy
autor
  • West Pomeranian University of Technology in Szczecin, al. Piastow 19, 70-310 Szczecin, Poland
autor
  • West Pomeranian University of Technology in Szczecin, al. Piastow 19, 70-310 Szczecin, Poland
autor
  • Teleskop Sp. z o.o., ul. Belgijska 5, 66-470, Kostrzyn nad Odra, Poland
Bibliografia
  • 1. J. Nowacki, A. Łukojć, Structure and properties of Heat affected zone of duplex steels joints, Journal of Materials Processing Technology 164-165 (2005) 1074-1081.
  • 2. J. Nowacki, P. Rybicki, Influence of heat input on corrosion resistance of SAW welded duplex joints, Journal of Achievements in Materials and Manufacturing Engineering 17/1-2 (2006) 113-116.
  • 3. J. Nowacki, Ferritic-austenitic steel and its weldability in large size constructions, Journal of Achievements in Materials and Manufacturing Engineering 32/2 (2009) 115-141.
  • 4. J. Nowacki, P. Rybicki, The influence if welding heat input on submerged arc welded duplex steel joints imperfections, Journal of Materials Processing Technology 164-165 (2005) 1082-1088.
  • 5. Web page: http://www.liebherr.com/.
  • 6. U. Hamme, J. Hauser, A. Kem, U. Schriever, Einsatz hochfester Baustahle im Mobilkranbau, Stahlbau 69 Ernst & Sohn (2000).
  • 7. Web page: http://www.teleskop.com.pl/.
  • 8. E. Taban, E. Kaluc, A. Dhooge, Hybrid (plasma + gas tungsten arc) weldability of modified 12% Cr ferritic stainless steel, Materials and Design 30 (2009) 4236-4242.
  • 9. Z.H. Rao, S.M. Liao, H.L. Tsai, Modelling of hybrid laser-GMA welding: review and challenges, Science and Technology of Welding and Joining 16/4 (2011) 300-305.
  • 10. W. Ozgowicz, E. Kalinowska-Ozgowicz, Investigations on the impact strength of constructional high-strength Weldox steel at lowered temperature, Archives of Materials Science and Engineering 32/2 (2008) 89-94.
  • 11. P. Nevasmaa, Prevention of weld metal hydrogen cracking in high strength multipass welds, Welding in the World 48/5-6 (2004) 2-18.
  • 12. S. Krajewski, J. Nowacki, Dual-phase steels microstructure and properties consideration based on artificial intelligence techniques, Advances in Materials Science 14/2 (2014) 278-286.
  • 13. Selection of welding consumables for hot-rolled steel plates, sheets and coils, Rautaruukki, 2013.
  • 14. M.H. Kolstein, O.D. Dijkstra, Tests on welded connections made of high strength steel up to 1100 MPa, Welding in the World 50/8-9 (2006) 512-519.
  • 15. M. Pitrun, D. Nolan, D. Dunne, Correlation of welding parameters and diffusible hydrogen content in rutile flux-cored arc welds, Australian Welding, 2014.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-5a032750-43df-450a-b1db-057b07829b48
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