A refined quasi-3D isogeometric nonlinear model of functionally graded triply periodic minimal surface plates
Author:
Publisher
Springer Science and Business Media LLC
Subject
Computer Science Applications,General Engineering,Modeling and Simulation,Software
Link
https://link.springer.com/content/pdf/10.1007/s00366-023-01891-y.pdf
Reference59 articles.
1. Han L, Che S (2018) An overview of materials with triply periodic minimal surfaces and related geometry: from biological structures to self-assembled systems. Adv Mater 30:1705708
2. Al-Ketan O, Abu Al-Rub RK (2019) Multifunctional mechanical metamaterials based on triply periodic minimal surface lattices. Adv Eng Mater 21:1900524
3. Pugliese R, Graziosi S (2023) Biomimetic scaffolds using triply periodic minimal surface-based porous structures for biomedical applications. SLAS Technol 28(3):165
4. Vijayavenkataraman S, Kuan LY, Lu WF (2020) 3d-printed ceramic triply periodic minimal surface structures for design of functionally graded bone implants. Mater Des 191:108602
5. Hussain I, Al-Ketan O, Renda F, Malvezzi M, Prattichizzo D, Seneviratne L, Abu Al-Rub RK, Gan D (2020) Design and prototyping soft-rigid tendon-driven modular grippers using interpenetrating phase composites materials. Int J Robot Res 39:1635–1646
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