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Materials Science in Additive Manufacturing Impact of cell angle on AlSi10Mg structures
Dodeca-C P80 showed a remarkable 73.1% increase in References
energy absorption compared to Dodeca-A P80 at a higher 1. Babaei M, Kiarasi F, Asemi K, Hosseini M. Functionally
impact energy of 248 J.
graded saturated porous structures: A review. J Comput Appl
The experimental results and numerical simulations Mech. 2022;53:297-308.
align, revealing that the Dodeca-C and Octa-A structures doi: 10.22059/jcamech.2022.342710.719
exhibit improved energy absorption and impact resistance. 2. Wu ZY, Liu YJ, Wu X, Liu XC, Wang JC, Wang Q. Fatigue
This provides a foundation for further single-unit cell performance of beta titanium alloy topological porous
rotation design optimization through simulation modeling. structures fabricated by laser powder bed fusion. J Mater Res
Acknowledgments Technol. 2024;29:4772-4780.
doi: 10.1016/j.jmrt.2024.02.190
J.C. Wang is grateful for the support from the Woodside
TechWorks FutrueLab at The University of Western 3. Siddique SH, Hazell PJ, Wang H, Escobedo JP, Ameri AAH.
Australia and Woodside Energy Group Ltd. Lessons from nature: 3D printed bio-inspired porous
structures for impact energy absorption-A review. Addit
Funding Manuf. 2022;58:103051.
doi: 10.1016/j.addma.2022.103051
The authors are grateful for funding from the Shanghai
Sailing Program (Grant number: 19YF1434300), Shanghai 4. Wu ZY, Liu YJ, Bai HW, et al. Microstructure and mechanical
Engineering Research Center of High-Performance Medical behavior of rhombic dodecahedron-structured porous β-Ti
Device Materials (No. 20DZ2255500), and the National Natural composites fabricated via laser powder bed fusion. J Mater
Res Technol. 2024;31:298-310.
Science Foundation of China (Grant number: 11947137).
doi: 10.1016/j.jmrt.2024.06.077
Conflicts of interest 5. Wang B, Luo M, Shi Z, et al. Porous titanium alloys for
The authors declare that they have no known competing medical application: Progress in preparation process and
financial interests or personal relationships that could have surface modification research. MSAM. 2024;3:2753.
appeared to influence the work reported in this paper. doi: 10.36922/msam.2753
Author contributions 6. Dul’nev GN, Volkov DP, Malarev VI. Thermal conductivity
of moist porous materials. J Eng Phys. 1989;56:198-206.
Conceptualization: Hulin Tang, Songhao Lu, Xuezheng Yue, doi: 10.1007/BF00870578
Data curation: Songhao Lu, Xuezheng Yue
Formal analysis: Xuezheng Yue, Jincheng Wang 7. Yin H, Zhang W, Zhu L, Meng F, Liu J, Wen G. Review on
Investigation: Hulin Tang, Shiyue Guo, Rusheng Zhao, lattice structures for energy absorption properties. Compos
Struct. 2023;304:116397.
Jincheng Wang
Methodology: Hulin Tang, Xuezheng Yue doi: 10.1016/j.compstruct.2022.116397
Software: Hulin Tang 8. Xu K, Cao J, Zheng Z, et al. Deformation behavior of
Validation: Hulin Tang, Songhao Lu, Rusheng Zhao, inconel 625 alloy with TPMS structure. Materials (Basel).
Jincheng Wang 2025;18:396.
Visualization: Xuezheng Yue doi: 10.3390/ma18020396
Writing – original draft: Hulin Tang
Writing – review & editing: Boyoung Hur, Xuezheng Yue, 9. Lu S, Zhang M, Guo S, Hur B, Yue X. Numerical investigation
Jincheng Wang of impact behavior of strut-based cellular structures designed
by spatial voronoi tessellation. Metals. 2022;12:1189.
Ethics approval and consent to participate doi: 10.3390/met12071189
Not applicable. 10. Ha NS, Pham TM, Hao H, Lu G. Energy absorption
characteristics of bio-inspired hierarchical multi-cell square
Consent for publication tubes under axial crushing. Int J Mech Sci. 2021;201:106464.
Not applicable. doi: 10.1016/j.ijmecsci.2021.106464
11. Ha NS, Pham TM, Tran TT, Hao H, Lu G. Mechanical
Availability of data properties and energy absorption of bio-inspired hierarchical
Data are available from the corresponding authors upon circular honeycomb. Compos Part B Eng. 2022;236:109818.
reasonable request. doi: 10.1016/j.compositesb.2022.109818
Volume 4 Issue 2 (2025) 16 doi: 10.36922/MSAM025130019

