The structure and mechanical design of rhinoceros dermal armour
- 29 September 1992
- journal article
- Published by The Royal Society in Philosophical Transactions Of The Royal Society B-Biological Sciences
- Vol. 337 (1282) , 419-428
- https://doi.org/10.1098/rstb.1992.0118
Abstract
The collagenous dermis of the white rhinoceros forms a thick, protective armour that is highly specialized in its structure and material properties compared with other mammalian skin. Rhinoceros skin is three times thicker than predicted allometrically, and it contains a dense and highly ordered three-dimensional array of relatively straight and highly crosslinked collagen fibres. The skin of the back and flanks exhibits a steep stress-strain curve with very little ‘toe’ region, a high elastic modulus (240 MPa), a high tensile strength (30 MPa), a low breaking strain (0.24) and high breaking energy (3 MJm -3 ) and work of fracture (78 kJm -2 ). By comparison, the belly skin is somewhat less stiff, weaker, and more extensible. In compression, rhinoceros skin withstands average stresses and strains of 170 MPa and 0.7, respectively, before yielding. As a biological material, rhinoceros dorsolateral skin has properties that are intermediate between those of ‘normal’ mammalian skin and tendons. This study shows that the dermal armour of the rhinoceros is very well adapted to resist blows from the horns of conspecifics, as might occur during aggressive behaviour, due to specialized material properties as well as its great thickness.Keywords
This publication has 15 references indexed in Scilit:
- Mechanical characterization of skin—Finite deformationsPublished by Elsevier ,2004
- Fracture of non-linear biological materials: some observations from practice relevant to recent theoryJournal of Physics D: Applied Physics, 1989
- On being thick-skinned: dermal shields in large mammalian herbivoresBiological Journal of the Linnean Society, 1989
- The Shield of the Domestic Boar (Sus scrofa L.): Its Gross Anatomy, Histology and Possible FunctionAnatomia, Histologia, Embryologia, 1988
- Surface sculpturing and water retention of elephant skinJournal of Zoology, 1987
- Measurement of the fracture toughness of extensible connective tissuesJournal of Materials Science, 1983
- The size of African forest artiodactyls as determined by the vegetation structureAfrican Journal of Ecology, 1979
- A skin shield in Siberian roe males (Capreolus capreolus pygargus Pall.)Mammalia, 1979
- The development of a dermal shield in impalaJournal of Zoology, 1972
- On Fighting Injuries and Dermal Shields of Mountain GoatsThe Journal of Wildlife Management, 1967