Roughness-engineered potential wells for controllable ultrasonic cavitation: Multistage bubble capture-release mechanism revealed by multiscale experiments and simulations. [PDF]
Suo Y +7 more
europepmc +1 more source
Breaking Stiffness-Tunability Trade-offs in Metamaterials: a Minimal Surface Guided Hybrid Lattice Strategy. [PDF]
Zhang M +7 more
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Enhancing Mechanical Energy Absorption of Honeycomb and Triply Periodic Minimal Surface Lattice Structures Produced by Fused Deposition Modelling in Reusable Polymers. [PDF]
Bustihan A +3 more
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Influence of load-bearing angle, structural topology, and porosity gradient on the energy absorption capability of TPMS-based scaffolds for bone tissue engineering. [PDF]
Zhang C, Lyu Y, Semenova A, Li Z.
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Novel static mixers based on triply periodic minimal surface (TPMS) architectures
Journal of Environmental Chemical Engineering, 2020Abstract Static mixers are frequently used in water treatment applications, for example as inline coagulators. A desired geometry of a static mixer is one that results in low mixing energy and high mixing efficiency. Triply periodic minimal surfaces (TPMS) are architectures which are described mathematically such that the mean curvature is zero at ...
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Triply periodic minimal surface (TPMS) has a promising application in the design of bone scaffolds due to its relevance in bone structure. Notably, the mechanical properties of TPMS scaffolds can be affected by many factors, including the spatial angle and surface curvature, which, however, remain to be discovered.
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Abstract Triply periodic minimal surfaces (TPMS)‐based lattice structures exhibit improved mechanical and energy absorption properties compared to other lattices. Fused filament fabrication is the preferred approach for fabricating these structures and majority of the existing TPMS structures ...
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