Page 57 - MSAM-3-4
P. 57
Materials Science in Additive Manufacturing Directed energy deposition
24. Deng R, Mao M, Zhao C, et al. Effect of laser remelting energy deposition. Tribo Int. 2023;189:108932.
scanning speed on microstructure and abrasion resistance doi: 10.1016/j.triboint.2023.108932
of laser cladded Fe based alloy coatings. Mater Lett.
2024;366:136562. 30. Li Y, Dong S, Yan S, et al. Phase evolution of ductile
iron during laser cladding processing. Surf Coat Tech.
doi: 10.1016/j.matlet.2024.136562
2018;339:37-47.
25. Deng R, Li H, Zhao C, et al. Study on the effect of laser 31. Li Y, Dong S, Yan S, et al. Surface remanufacturing of ductile
remelting energy density on the microstructure and wear cast iron by laser cladding Ni-Cu alloy coatings. Surf Coat
resistance of Fe-based alloy coatings fabricated by laser Tech. 2018;347:20-28.
cladding. J Therm Spray Tech. 2024;33:1455-1471.
doi: 10.1016/j.surfcoat.2018.04.065
doi: 10.1007/s11666-024-01795-3
32. Sohi M, Ebrahimi M, Ghasemi H, et al. Microstructural
26. Xu P, Zhu L, Xue P, et al. Microstructure and properties
of IN718/WC-12Co composite coating by laser cladding. study of surface melted and chromium surface alloyed
Ceram Int. 2022;48:9218-9228. ductile iron. Appl Surf Sci. 2012;258:7348-7353.
doi: 10.1016/j.apsusc.2012.04.014
doi: 10.1016/j.ceramint.2021.12.108
33. Deng R, Mao M, Zhao C, et al. A review of recent advances
27. Wei R, Mao M, Liang J, et al. Study of the effect of overlap
rate on the failure form, microstructure and wear resistance in integrated laser remelting and laser cladding processes.
of multilayer laser cladding on grey cast iron surfaces. Tribo Metall Res Technol. 2024;121:402.
Int. 2024;194:109568. doi: 10.1051/metal/2024038
doi: 10.1016/j.triboint.2024.109568 34. Li Q, Bai Q, Zhao C, et al. Microstructure evolution of laser
cladding coatings treated by multi-pass power spinning.
28. Sun B, Wang Q, Chen Y, et al. Dendrite refinement and
wear performance enhancement in laser-cladded Fe-based Mater Charact. 2023;199:112819.
coatings after multi-step laser remelting. Surf Coat Tech. doi: 10.1016/j.matchar.2023.112819
2022;447:128794.
35. Zhu L, Liu Y, Li Z, et al. Microstructure and properties of
doi: 10.1016/j.surfcoat.2022.128794 Cu-Ti-Ni composite coatings on gray cast iron fabricated by
laser cladding. Opt Laser Technol. 2020;122:105879.
29. Wang Y, Xu L, Zhao L, et al. Friction and tribocorrosion
behavior of Fe-Cr-B alloys manufactured by laser directed doi: 10.1016/j.optlastec.2019.105879
Volume 3 Issue 4 (2024) 12 doi: 10.36922/msam.4974

