Structure and fracture resistance of alligator gar (Atractosteus spatula) armored fish scales
Research output: Journal Publications and Reviews › RGC 21 - Publication in refereed journal › peer-review
Author(s)
Detail(s)
Original language | English |
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Pages (from-to) | 5876-5889 |
Journal / Publication | Acta Biomaterialia |
Volume | 9 |
Issue number | 4 |
Online published | 27 Dec 2012 |
Publication status | Published - Apr 2013 |
Externally published | Yes |
Link(s)
Abstract
The alligator gar is a large fish with flexible armor consisting of ganoid scales. These scales contain a thin layer of ganoine (microhardness ∼2.5 GPa) and a bony body (microhardness ∼400 MPa), with jagged edges that provide effective protection against predators. We describe here the structure of both ganoine and bony foundation and characterize the mechanical properties and fracture mechanisms. The bony foundation is characterized by two components: a mineralized matrix and parallel arrays of tubules, most of which contain collagen fibers. The spacing of the empty tubules is ∼60 μm; the spacing of those filled with collagen fibers is ∼7 μm. Using micromechanical testing of such scales in a variable-pressure scanning electron microscope, we identify interactions between propagating cracks and the microstructure, and show that the toughness of the scales increases with crack extension in a classical resistance-curve response from the activation of extrinsic toughening mechanisms. We demonstrate how mechanical damage evolves in these structures, and further identify that the reinforcement of the mineral by the network of collagen fibers is the principal toughening mechanism resisting such damage. Additionally, we define the anisotropy of the toughness of the scales and relate this to the collagen fiber orientation.
Research Area(s)
- Flexible armor, Fracture mechanism, Fracture resistance, Scale, Structure
Citation Format(s)
Structure and fracture resistance of alligator gar (Atractosteus spatula) armored fish scales. / Yang, Wen; Gludovatz, Bernd; Zimmermann, Elizabeth A. et al.
In: Acta Biomaterialia, Vol. 9, No. 4, 04.2013, p. 5876-5889.
In: Acta Biomaterialia, Vol. 9, No. 4, 04.2013, p. 5876-5889.
Research output: Journal Publications and Reviews › RGC 21 - Publication in refereed journal › peer-review