Features of Modification of the Roughness and Hardness of the Surface of AISI 321 Stainless Steel with Short-Pulse Laser Radiation

Author:

Zawadzki PawełORCID,Dobrotvorskiy SergeyORCID,Aleksenko Borys A.ORCID,Basova YevheniiaORCID,Trubin DmytroORCID,Prykhodko VadymORCID,Kościński MikołajORCID

Publisher

Springer Nature Switzerland

Reference25 articles.

1. Daskalova, A., Angelova, L.: Design of surfaces with persistent antimicrobial properties on stainless steel developed using femtosecond laser texturing for application in “high traffic” objects. Nanomaterials 13(17), 2396 (2023). https://doi.org/10.3390/nano13172396

2. Zaifuddin, A.Q., Afiq, M.D., Aiman, M.H., Quazi, M.M., Ishak, M.: Effect of laser surface modification on SS316L surface roughness and laser heating temperature. In: Ismail, M.Y., Mohd Sani, M.S., Kumarasamy, S., Hamidi, M.A., Shaari, M.S. (eds.) Technological Advancement in Mechanical and Automotive Engineering. ICMER 2021. LNME, pp. 959–969. Springer, Singapore (2023). https://doi.org/10.1007/978-981-19-1457-7_74

3. Dobrotvorskiy, S., Aleksenko, B.A., Kościński, M., Basova, Y., Prykhodko, V.: Modeling and surface modification of aisi 321 stainless steel by nanosecond laser radiation. In: Ivanov, V., Trojanowska, J., Pavlenko, I., Rauch, E., Piteľ, J. (eds.) Advances in Design, Simulation and Manufacturing VI. DSMIE 2023. LNME, pp. 205–215. Springer, Cham (2023). https://doi.org/10.1007/978-3-031-32767-4_20

4. Lu, Y., Guan, Y., Li, Y., Yang, L., Wang, M., Wang, Y.: Nanosecond laser fabrication of superhydrophobic surface on 316L stainless steel and corrosion protection application. Colloids Surf. A 604, 125259 (2020). https://doi.org/10.1016/j.colsurfa.2020.12525

5. Zhongkai, Q., Hu, C., Yao, D., Shibin, S., Wei, L.: Study on measurement of adsorption capacity of unsymmetrical dimethylhydrazine gas based on stainless steel. J. Phys: Conf. Ser. 2428, 012010 (2023). https://doi.org/10.1088/1742-6596/2428/1/012010

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