Selection of parameters of laser welding of thin-walled items from light alloys with nonthrough thickness penetration

Author:

Korzhyk V.M., ,Khaskin V.Yu.,Peleshenko S.I.,Grynyuk A.A.,Chunlin Dong,Illyashenko E.V.,Yao Yuhui, , , , , ,

Publisher

International Association Welding

Subject

General Medicine

Reference15 articles.

1. A review on laser-assisted joining of aluminium alloys to other metals;Bunaziv;Metals 1680(11) 1-40 DOI https//doi org/10 3390/ met,2021

2. 2. Criss, E.M. (2015) Surrogacy of beryllium welds and heat transfer in metals: Dissertation for the degree Dr. of Philosophy (Mechanical Engineering), University of California, San Diego (USA) Permalink: http://escholarship.org/uc/ item/8sx939v4

3. 3. Zhao, T., Sato, Y.S., Xiao, R. et al. (2020) Laser pressure welding of Al-Li alloy 2198: Effect of welding parameters on fusion zone characteristics associated with mechanical properties. High Temperature Materials and Processes, 39(1), 146-156. DOI: https://doi.org/10.1515/htmp-2020-0047

4. 4. Miyagi, M., Wang, H., Yoshida, R. et al. (2018). Effect of alloy element on weld pool dynamics in laser welding of aluminum alloys. Scientific Reports, 12944(8), 1-10. DOI: https://doi.org/10.1038/s41598-018-31350-4

5. 5. Hill, M., Damkroger, B.K., Dixon, R.D., Robertson, E. (1990) Beryllium weldability. Los Alamos National Laboratory, Materials Weldability Symposium, ASM Materials Week. Detroit, Michigan (USA). Permalink, https://www.researchgate. net/publication/236557474

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