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Mechanical performance of additively manufactured meta-biomaterials
AA Zadpoor - Acta biomaterialia, 2019 - Elsevier
Abstract Additive manufacturing (AM)(= 3D printing) and rational design techniques have
enabled development of meta-biomaterials with unprecedented combinations of …
enabled development of meta-biomaterials with unprecedented combinations of …
Auxetic mechanical metamaterials
The surge of interest in so-called “designer materials” during the last few years together with
recent advances in additive manufacturing (3D printing) techniques that enable fabrication …
recent advances in additive manufacturing (3D printing) techniques that enable fabrication …
Auxetic mechanical metamaterials: from soft to stiff
X Li, W Peng, W Wu, J ** in robotic manipulation
X Huang, W Guo, S Liu, Y Li, Y Qiu… - Advanced Functional …, 2022 - Wiley Online Library
Abstract Electronic‐skin (E‐skin) has been investigated extensively for robotic tactile
sensing. However, E‐skin sensors based on flexible metamaterials are still challenging to …
sensing. However, E‐skin sensors based on flexible metamaterials are still challenging to …
[HTML][HTML] Additive manufacturing of biomaterials—Design principles and their implementation
Additive manufacturing (AM, also known as 3D printing) is an advanced manufacturing
technique that has enabled progress in the design and fabrication of customised or patient …
technique that has enabled progress in the design and fabrication of customised or patient …
Progress in auxetic mechanical metamaterials: structures, characteristics, manufacturing methods, and applications
Z Wang, C Luan, G Liao, J Liu… - Advanced Engineering …, 2020 - Wiley Online Library
Auxetic mechanical metamaterials (AMMs), as an exciting paradigm of metamaterials, have
attracted increasing attention due to their interesting mechanical properties (eg negative …
attracted increasing attention due to their interesting mechanical properties (eg negative …
A novel auxetic 3D lattice structure for enhancing energy absorption
The auxetic lattice structures usually have excellent energy absorption characteristics since
their failed part can resist crushing loads continuously. However, their platform stress is …
their failed part can resist crushing loads continuously. However, their platform stress is …