Techmański, Z.; Stępień, J.; Garstka, T.; Wieczorek, P.; Nowak, J.; Kobielski, A.
The Use of the Linear Energy Calculation Model in High-Frequency Induction (HFI) Tube Welding Technology to Obtain Optimal Microstructure and Weld Geometry. Metals 2023, 13, 1381.
https://doi.org/10.3390/met13081381
AMA Style
Techmański Z, Stępień J, Garstka T, Wieczorek P, Nowak J, Kobielski A.
The Use of the Linear Energy Calculation Model in High-Frequency Induction (HFI) Tube Welding Technology to Obtain Optimal Microstructure and Weld Geometry. Metals. 2023; 13(8):1381.
https://doi.org/10.3390/met13081381
Chicago/Turabian Style
Techmański, Zbigniew, Jacek Stępień, Tomasz Garstka, Paweł Wieczorek, Jakub Nowak, and Artur Kobielski.
2023. "The Use of the Linear Energy Calculation Model in High-Frequency Induction (HFI) Tube Welding Technology to Obtain Optimal Microstructure and Weld Geometry" Metals 13, no. 8: 1381.
https://doi.org/10.3390/met13081381
APA Style
Techmański, Z., Stępień, J., Garstka, T., Wieczorek, P., Nowak, J., & Kobielski, A.
(2023). The Use of the Linear Energy Calculation Model in High-Frequency Induction (HFI) Tube Welding Technology to Obtain Optimal Microstructure and Weld Geometry. Metals, 13(8), 1381.
https://doi.org/10.3390/met13081381