Have a personal or library account? Click to login
Evaluation of Microstructure and Selected Mechanical Properties of Laser Beam Welded S690QL High-Strength Steel Cover

Evaluation of Microstructure and Selected Mechanical Properties of Laser Beam Welded S690QL High-Strength Steel

By: L. Tuz  
Open Access
|Oct 2018

References

  1. 1. Goss C., Marecki P., Applications of high strength steels in welded structures on the example of XABO 890 and XABO 960 steels, [Zastosowanie stali wysokowytrzymałych w konstrukcjach spawanych na przykładzie stali XABO 890 i XABO 960]; Logistyka, 6 (2014), p. 4122-4129. (In Polish).
  2. 2. Brezová B., Mäsiar H., Radič P., Welding of high strength materials used in the manufacture of special equipment, University Review, 8, 3-4 (2014), 51-61.
  3. 3. Löbbe Ch., Hering O., Hiegemann L., Tekkaya A.E., Setting mechanical properties of high strength steels for rapid hot forming processes, Materials, 9 (2016), 229 doi:10.3390/ma9040229.10.3390/ma9040229550280228773354
  4. 4. Banerjee K., Improving weldability of an advanced high strength steel by design of base metal microstructure; Journal of Materials Processing Technology, 229 (2016), 596–608.
  5. 5. Nowacki J., Sajek A., Matkowski P., The influence of welding heat input on the microstructure of joints of S1100QL steel in one-pass welding; Archives of Civil and Mechanical Engineering, 16 (2016), 777–783.
  6. 6. Barsoum Z., Khurshid M., Ultimate strength of welded joints in high strength steels, Procedia Structural Integrity, 5 (2017), 1401-1408.10.1016/j.prostr.2017.07.204
  7. 7. K. Pańcikiewicz, L. Tuz, Z. Żurek, Ł. Rakoczy; Optimization of filler metals consumption in the production of welded steel structures; Advanced in Materials Science, 16(1) (2016), p. 27-34; doi: 10.1515/adms-2016-000310.1515/adms-2016-0003
  8. 8. Pańcikiewicz K., Zielińska-Lipiec A., Tasak E., Cracking of high-strength steel welded joints; Advanced in Materials Science, 13(3) (2013), 76-85; doi: 10.2478/adms-2013-0013.10.2478/adms-2013-0013
  9. 9. Rogalski G., Fydrych D., Łabanowski J., Underwater Wet Repair Welding of API 5L X65M Pipeline Steel, Polish Maritime Research, 24 1 (93) (2017), 188-194; doi: 10.1515/pomr-2017-0038.10.1515/pomr-2017-0038
  10. 10. Świerczyńska A., Fydrych D., Rogalski G., Diffusible hydrogen management in underwater wet self-shielded flux cored arc welding, International Journal of Hydrogen Energy, 42(38) (2017), 24532-24540.10.1016/j.ijhydene.2017.07.225
  11. 11. Kurc-Lisiecka A., Lisiecki A., Laser welding of the new grade of advanced high-strength steel Domex 960, Materiali in tehnologije / Materials and technology, 51(2) (2017), 199–204; doi:10.17222/mit.2015.158.10.17222/mit.2015.158
  12. 12. Kurc-Lisiecka A., Piwnik J., Lisiecki A., Laser welding of new grade of advanced high strength steel STRENX 1100 MC, Archives of Metallurgy Materials, 62(3) (2017), 1651-1657; doi: 10.1515/amm-2017-0253.10.1515/amm-2017-0253
DOI: https://doi.org/10.1515/adms-2017-0039 | Journal eISSN: 2083-4799 | Journal ISSN: 1730-2439
Language: English
Page range: 34 - 42
Published on: Oct 29, 2018
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2018 L. Tuz, published by Gdansk University of Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.