Fish-inspired flexible protective material systems with anisotropic bending stiffness

Armored fish exoskeletons combine flexibility and protection from predators and territorial attacks. Here, using modeling, 3D printing, and experimental testing, the mechanical origin of anisotropic bending stiffness in fish scale architectures is revealed, providing design guidelines for biomimetic...

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Autores principales: Katia Zolotovsky, Swati Varshney, Steffen Reichert, Eric M. Arndt, Ming Dao, Mary C. Boyce, Christine Ortiz
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/809f2d2548084c68b652261084988e67
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spelling oai:doaj.org-article:809f2d2548084c68b652261084988e672021-12-02T11:44:58ZFish-inspired flexible protective material systems with anisotropic bending stiffness10.1038/s43246-021-00140-32662-4443https://doaj.org/article/809f2d2548084c68b652261084988e672021-03-01T00:00:00Zhttps://doi.org/10.1038/s43246-021-00140-3https://doaj.org/toc/2662-4443Armored fish exoskeletons combine flexibility and protection from predators and territorial attacks. Here, using modeling, 3D printing, and experimental testing, the mechanical origin of anisotropic bending stiffness in fish scale architectures is revealed, providing design guidelines for biomimetics.Katia ZolotovskySwati VarshneySteffen ReichertEric M. ArndtMing DaoMary C. BoyceChristine OrtizNature PortfolioarticleMaterials of engineering and construction. Mechanics of materialsTA401-492ENCommunications Materials, Vol 2, Iss 1, Pp 1-10 (2021)
institution DOAJ
collection DOAJ
language EN
topic Materials of engineering and construction. Mechanics of materials
TA401-492
spellingShingle Materials of engineering and construction. Mechanics of materials
TA401-492
Katia Zolotovsky
Swati Varshney
Steffen Reichert
Eric M. Arndt
Ming Dao
Mary C. Boyce
Christine Ortiz
Fish-inspired flexible protective material systems with anisotropic bending stiffness
description Armored fish exoskeletons combine flexibility and protection from predators and territorial attacks. Here, using modeling, 3D printing, and experimental testing, the mechanical origin of anisotropic bending stiffness in fish scale architectures is revealed, providing design guidelines for biomimetics.
format article
author Katia Zolotovsky
Swati Varshney
Steffen Reichert
Eric M. Arndt
Ming Dao
Mary C. Boyce
Christine Ortiz
author_facet Katia Zolotovsky
Swati Varshney
Steffen Reichert
Eric M. Arndt
Ming Dao
Mary C. Boyce
Christine Ortiz
author_sort Katia Zolotovsky
title Fish-inspired flexible protective material systems with anisotropic bending stiffness
title_short Fish-inspired flexible protective material systems with anisotropic bending stiffness
title_full Fish-inspired flexible protective material systems with anisotropic bending stiffness
title_fullStr Fish-inspired flexible protective material systems with anisotropic bending stiffness
title_full_unstemmed Fish-inspired flexible protective material systems with anisotropic bending stiffness
title_sort fish-inspired flexible protective material systems with anisotropic bending stiffness
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/809f2d2548084c68b652261084988e67
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