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Shape-matching soft mechanical metamaterials

Authors :
Mirzaali Mazandarani, M. (author)
Janbaz, S. (author)
Strano, M. (author)
Vergani, L. (author)
Zadpoor, A.A. (author)
Mirzaali Mazandarani, M. (author)
Janbaz, S. (author)
Strano, M. (author)
Vergani, L. (author)
Zadpoor, A.A. (author)
Publication Year :
2018

Abstract

Architectured materials with rationally designed geometries could be used to create mechanical metamaterials with unprecedented or rare properties and functionalities. Here, we introduce "shape-matching" metamaterials where the geometry of cellular structures comprising auxetic and conventional unit cells is designed so as to achieve a pre-defined shape upon deformation. We used computational models to forward-map the space of planar shapes to the space of geometrical designs. The validity of the underlying computational models was first demonstrated by comparing their predictions with experimental observations on specimens fabricated with indirect additive manufacturing. The forward-maps were then used to devise the geometry of cellular structures that approximate the arbitrary shapes described by random Fourier's series. Finally, we show that the presented metamaterials could match the contours of three real objects including a scapula model, a pumpkin, and a Delft Blue pottery piece. Shape-matching materials have potential applications in soft robotics and wearable (medical) devices.<br />Biomaterials & Tissue Biomechanics

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1022935066
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1038.s41598-018-19381-3