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Multifunctional mechanical metamaterials based on triply periodic minimal surface lattices
In nature, cellular materials exhibit enhanced multifunctionalities driven mainly by their
sophisticated topologies and length scales. These natural systems have inspired the …
sophisticated topologies and length scales. These natural systems have inspired the …
3D‐printed micro/nano‐scaled mechanical metamaterials: Fundamentals, technologies, progress, applications, and challenges
Micro/nano‐scaled mechanical metamaterials have attracted extensive attention in various
fields attributed to their superior properties benefiting from their rationally designed …
fields attributed to their superior properties benefiting from their rationally designed …
Energy absorption characteristics of metallic triply periodic minimal surface sheet structures under compressive loading
Designing metallic cellular structures with triply periodic minimal surface (TPMS) sheet cores
is a novel approach for lightweight and multi-functional structural applications. Different from …
is a novel approach for lightweight and multi-functional structural applications. Different from …
Topology-mechanical property relationship of 3D printed strut, skeletal, and sheet based periodic metallic cellular materials
Recent advances in additive manufacturing facilitated the fabrication of parts with great
geometrical complexity and relatively small size, and allowed for the fabrication of …
geometrical complexity and relatively small size, and allowed for the fabrication of …
Enhancement in the mechanical behaviour of a Schwarz Primitive periodic minimal surface lattice structure design
Triply periodic minimal surface (TPMS) sheet lattice structures are composed of continuous
and smooth shells, enabling the achievement of a high surface-to-volume ratio and pore …
and smooth shells, enabling the achievement of a high surface-to-volume ratio and pore …
[HTML][HTML] Bioinspired heat exchangers based on triply periodic minimal surfaces for supercritical CO2 cycles
The supercritical carbon dioxide (sCO 2) based Brayton cycle is a proposed alternative to
replace conventional Rankine cycles in terms of high cycle efficiency, compact …
replace conventional Rankine cycles in terms of high cycle efficiency, compact …
Gyroid liquid crystals as quasi-solid-state electrolytes toward ultrastable zinc batteries
L Su, F Lu, Y Li, Y Wang, X Li, L Zheng, X Gao - ACS nano, 2024 - ACS Publications
The potential for optimizing ion transport through triply periodic minimal surface (TPMS)
structures renders promising electrochemical applications. In this study, as a proof-of …
structures renders promising electrochemical applications. In this study, as a proof-of …
Mechanical properties of 3D printed polymeric Gyroid cellular structures: Experimental and finite element study
Gyroid is a member of the triply periodic minimal surfaces (TPMS) family. In this paper, the
mechanical properties of Gyroid-structures are investigated both experimentally and …
mechanical properties of Gyroid-structures are investigated both experimentally and …
Smooth-shell metamaterials of cubic symmetry: Anisotropic elasticity, yield strength and specific energy absorption
Shell-lattices consist of a single, periodic, non-intersecting shell of uniform wall thickness
that separates two intertwined void phases. To obtain a comprehensive overview on their …
that separates two intertwined void phases. To obtain a comprehensive overview on their …
Acoustic absorptions of multifunctional polymeric cellular structures based on triply periodic minimal surfaces fabricated by stereolithography
Polymeric cellular structures based on triply periodic minimal surfaces (TPMS) have been
widely studied for applications in multiple disciplines due to their multifunctionality. However …
widely studied for applications in multiple disciplines due to their multifunctionality. However …