Cite

1. ARATA, Y., MIYAMOTO, I. 1972. Some fundamental properties of high power laser beam as a heat source (report 2). Transactions of the Japan Welding Society 1972;3.10.2207/qjjws1943.41.170Search in Google Scholar

2. COVELLI, L., JOVANE, F., DE LORIO L., TAGLIAFERRI, V. 1988. Laser welding of stainless steel: Influence of the edges morphology. CIRP Annals — Manufacturing technology, 37, pp. 545-548.10.1016/S0007-8506(07)61697-7Search in Google Scholar

3. GÖRÖG, A., SAMARDŽIOVÁ, M., 2016. Metrology and quality of technological process.1 st. ed. Trnava: AlumniPress, 329 p. ISBN 978-80-8096-225-8Search in Google Scholar

4. MARTIN, J. W., 1998. Aluminium-Ithium Alloys. Annual Review Material Science, Vol. 18, pp 101-117.10.1146/annurev.ms.18.080188.000533Search in Google Scholar

5. OBEIDI, M., MCCARTHY, E., UBANI, S. I., BRABAZON, D. 2019. Effect of Surface Roughness on CO2 Laser Absorption by 316L Stainless Steel and Aluminum. Materials Performance and Characterization, 8. No. 6 [online]. [cit. 2020-09-18]. ISSN 2379-136510.1520/MPC20180091Search in Google Scholar

6. SOKOLOV, M., SALMINEN, A., SOMONOV, V., KAPLAN, A. 2012. Laser welding of structural steels: Influence of the edge roughness level. Optics & Laser Technology. [online]. 44, pp. 2064-2071 [cit. 2020-09-18]. ISSN 0030-399210.1016/j.optlastec.2012.03.025Search in Google Scholar

7. SCHLATTER, SETH. 2013. Improvements of Mechanical Properties in Aluminum-Lithium Alloys, Ruth & Ted Braun Awards for Writing Excellence. Sagina Valley State University, University Center, MI, p. 33.Search in Google Scholar

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