Page 82 - MSAM-3-2
P. 82
Materials Science in Additive Manufacturing Mechanical properties of NiTi TPMS
11. Bobbert FS, Lietaert K, Eftekhari AA, et al. Additively minimal surface structures with high specific strength for
manufactured metallic porous biomaterials based on broadband sound absorption produced by laser powder bed
minimal surfaces: A unique combination of topological, fusion. Coatings. 2023;13(11):1950.
mechanical, and mass transport properties. Acta Biomater. doi: 10.3390/coatings13111950
2017;53:572-584.
22. Li Z, Zhou Y, Kong X, et al. Sound absorption performance of a
doi: 10.1016/j.actbio.2017.02.024
micro-perforated plate sandwich structure based on selective
12. Yuan B, Zhu M, Chung CY. Biomedical porous shape laser melting. Virtual Phys Prototyp. 2024;19(1):386-400.
memory alloys for hard-tissue replacement materials. doi: 10.1080/17452759.2024.2321607
Materials (Basel). 2018;11(9):1716.
23. Kong XN, Bin L, Li ZH, Peng-Fei Z, Chao S. Research on
doi: 10.3390/ma11091716
sound absorption properties of tri-periodic minimal surface
13. Liu J, Xu MY, Zhang RD, Zhang X, Xi W. Progress of porous/ sandwich structure of selective laser melting titanium alloy.
lattice structures applied in thermal management technology Mater Trans. 2023;64(4):861-888.
of aerospace applications. Aerospace. 2022;9(12):827.
doi: 10.2320/matertrans.MT-M2022164
doi: 10.3390/aerospace9120827
24. Catchpole-Smith S, Selo RR, Davis AW, Ashcroft I, John
14. Riva L, Ginestra PS, Ceretti E. Mechanical characterization Tuck C, Clare AT. Thermal conductivity of TPMS lattice
and properties of laser-based powder bed-fused structures manufactured via laser powder bed fusion. Addit
lattice structures: A review. Int J Adv Manuf Technol. Manuf. 2019;30:100846.
2021;113(3-4):649-671.
doi: 10.1016/j.addma.2019.100846
doi: 10.1007/s00170-021-06631-4
25. Qu S, Ding J, Song X. Achieving triply periodic minimal
15. Chen Z, Wang X, Tao Y, Wen S, Zhou Y, Shi Y. Volume surface thin-walled structures by micro laser powder bed
fraction effect on the mechanical and shape memory fusion process. Micromachines. 2021;12(6):705.
properties of NiTi gyroid lattice structure fabricated by laser doi: 10.3390/mi12060705
powder bed fusion. JOM. 2024;76(3):1715-1725.
26. Dong L, Zhu Q, Liu X, et al. 3D printing Al porous
doi: 10.1007/s11837-024-06372-1
metamaterials with triply periodic minimal surfaces
16. Shi X, Liao W, Li P, et al. Comparison of compression (TPMS) for hydrogen generation from Al-water reaction.
performance and energy absorption of lattice structures Int J Hydrogen Energy. 2024;49:1426-1435.
fabricated by selective laser melting. Adv Eng Mater. doi: 10.1016/j.ijhydene.2023.10.047
2020;22(11):2000453.
27. Lei HY, Li JR, Wang QH, et al. Feasibility of preparing
doi: 10.1002/adem.202000453
additive manufactured porous stainless steel felts with
17. Alagha AN, Nguyen V, Zaki W. Effective phase transformation mathematical micro pore structure as novel catalyst support
behavior of NiTi triply periodic minimal surface for hydrogen production via methanol steam reforming. Int
architectures. J Intell Mater Syst Struct. 2023;34(6):672-695. J Hydrogen Energy. 2019;44(45):24782-24791.
doi: 10.1177/1045389x221115704 doi: 10.1016/j.ijhydene.2019.07.187
18. Zhang C, Jin J, He M, Yang L. Compressive mechanics 28. Khoo ZX, Liu Y, An J, Chua CK, Shen YF, Kuo CN. A review
and hyperelasticity of Ni-Ti lattice structures fabricated by of selective laser melted NiTi shape memory alloy. Materials.
selective laser melting. Crystals. 2022;12(3):408. 2018;11(4):519.
doi: 10.3390/cryst12030408 doi: 10.3390/ma11040519
19. Jin J, Wu S, Yang L, et al. Ni-Ti multicell interlacing Gyroid 29. Wang X, Kustov S, Van Humbeeck J. A short review on the
lattice structures with ultra-high hyperelastic response microstructure, transformation behavior and functional
fabricated by laser powder bed fusion. Int J Mach Tools properties of NiTi shape memory alloys fabricated by
Manuf. 2023;195:104099. selective laser melting. Materials. 2018;11(9):1683.
doi: 10.1016/j.ijmachtools.2023.104099 doi: 10.3390/ma11091683
20. Speirs M, Van Hooreweder B, Van Humbeeck J, Kruth JP. 30. Gao B, Zhao H, Peng L, Sun Z. A review of research
Fatigue behaviour of NiTi shape memory alloy scaffolds progress in selective laser melting (SLM). Micromachines.
produced by SLM, a unit cell design comparison. J Mech 2023;14(1):57.
Behav Biomed Mater. 2017;70:53-59.
doi: 10.3390/mi14010057
doi: 10.1016/j.jmbbm.2017.01.016
31. Jalali M, Mohammadi K, Movahhedy MR, et al. SLM
21. Zhang M, Liu C, Deng M, Li Y, Li J, Wang D. Graded additive manufacturing of NiTi porous implants: A review
Volume 3 Issue 2 (2024) 19 doi: 10.36922/msam.3137

