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Natural flexible dermal armor

  • Wen Yang
  • , Irene H. Chen
  • , Bernd Gludovatz
  • , Elizabeth A. Zimmermann
  • , Robert O. Ritchie
  • , Marc A. Meyers

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Fish, reptiles, and mammals can possess flexible dermal armor for protection. Here we seek to find the means by which Nature derives its protection by examining the scales from several fish (Atractosteus spatula, Arapaima gigas, Polypterus senegalus, Morone saxatilis, Cyprinius carpio), and osteoderms from armadillos, alligators, and leatherback turtles. Dermal armor has clearly been developed by convergent evolution in these different species. In general, it has a hierarchical structure with collagen fibers joining more rigid units (scales or osteoderms), thereby increasing flexibility without significantly sacrificing strength, in contrast to rigid monolithic mineral composites. These dermal structures are also multifunctional, with hydrodynamic drag (in fish), coloration for camouflage or intraspecies recognition, temperature and fluid regulation being other important functions. The understanding of such flexible dermal armor is important as it may provide a basis for new synthetic, yet bioinspired, armor materials.  
Original languageEnglish
Pages (from-to)31-48
JournalAdvanced Materials
Volume25
Issue number1
Online published15 Nov 2012
DOIs
Publication statusPublished - 4 Jan 2013
Externally publishedYes

Research Keywords

  • armor
  • bioinspired materials
  • defense
  • flexible materials
  • hierarchy

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