Hassan et al., 2023 - Google Patents
Design, fabrication, and evaluation of functionally graded triply periodic minimal surface structures fabricated by 3D printingHassan et al., 2023
View HTML- Document ID
- 9581870773990151496
- Author
- Hassan I
- Enab T
- Fouda N
- Eldesouky I
- Publication year
- Publication venue
- Journal of the Brazilian Society of Mechanical Sciences and Engineering
External Links
Snippet
Cellular structures are a favorite selection for the design of lightweight components and energy absorption applications due to several advantages such as their customizable stiffness and strength. In this investigation, functionally graded (FG) triply periodic minimal …
- 230000000737 periodic 0 title abstract description 21
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Hassan et al. | Design, fabrication, and evaluation of functionally graded triply periodic minimal surface structures fabricated by 3D printing | |
Guo et al. | Enhancement in the mechanical behaviour of a Schwarz Primitive periodic minimal surface lattice structure design | |
Al-Ketan et al. | Multifunctional mechanical metamaterials based on triply periodic minimal surface lattices | |
Dara et al. | Numerical and experimental investigations of novel nature inspired open lattice cellular structures for enhanced stiffness and specific energy absorption | |
Zhang et al. | Mechanical responses of sheet-based gyroid-type triply periodic minimal surface lattice structures fabricated using selective laser melting | |
Sharma et al. | Additively manufactured mechanical metamaterials based on triply periodic minimal surfaces: Performance, challenges, and application | |
Abate et al. | Design, optimization, and validation of mechanical properties of different cellular structures for biomedical application | |
Zhang et al. | A study of multi-stage energy absorption characteristics of hybrid sheet TPMS lattices | |
Maszybrocka et al. | The manufacturability and compression properties of the Schwarz Diamond type Ti6Al4V cellular lattice fabricated by selective laser melting | |
de Jonge et al. | Non-auxetic mechanical metamaterials | |
Wang et al. | Cell-size graded sandwich enhances additive manufacturing fidelity and energy absorption | |
Almesmari et al. | Review of additively manufactured polymeric metamaterials: design, fabrication, testing and modeling | |
Jin et al. | Investigation on the mechanical properties of TPMS porous structures fabricated by laser powder bed fusion | |
Sala et al. | Insights into the printing parameters and characterization of thermoplastic polyurethane soft triply periodic minimal surface and honeycomb lattices for broadening material extrusion applicability | |
Zhang et al. | Design and mechanical behaviours of a novel tantalum lattice structure fabricated by SLM | |
Tripathi et al. | Implicit-function-based design and additive manufacturing of triply periodic minimal surfaces scaffolds for bone tissue engineering | |
Libonati et al. | 3D-printed architected materials inspired by cubic bravais lattices | |
Mantovani et al. | Effective mechanical properties of AlSi7Mg additively manufactured cubic lattice structures | |
Caiazzo et al. | Metal functionally graded gyroids: additive manufacturing, mechanical properties, and simulation | |
Guo et al. | A partially hollow BCC lattice structure with capsule-shaped cavities for enhancing load-bearing and energy absorption properties | |
Mines et al. | Metallic microlattice structures | |
Zhang et al. | Protective performance of hybrid triply periodic minimal surface lattice structure | |
Intrigila et al. | The compressive response of additively-manufactured hollow truss lattices: an experimental investigation | |
Ali et al. | Insight into the mechanical properties of 3D printed strut-based lattice structures | |
Zhao et al. | Quasi-static compressive mechanical properties of multilayer micro-lattice biomaterials for skull repair |