In this letter we present the "Egg of Columbus" for making fibres with unprecedented toughness: a slider, in the simplest form just a knot, is introduced as frictional element to dissipate additional energy and thus demonstrating the existence of a previously "hidden" toughness. The proof of concept is experimentally realized making the world’s toughest fibre, increasing the toughness modulus of a commercial Endumax macroscopic fibre from 44 J/g up to 1070 J/g (and of a zylon microfiber from 20 J/g up to 1400 J/g). The ideal upperbound toughness is expected for graphene, with a theoretical value of 10^5 J/g. This new concept, able of maximizing (one fold increment) the structural robustness, could explain the mysterious abundance of knot formations, in spite of their incremental energy cost and topological difficulty, in biological evolved structures, such as DNA strands and proteins.

The "Egg of Columbus" for Making the World's Toughest Fibres / Pugno, Nicola. - In: PLOS ONE. - ISSN 1932-6203. - 9:4(2014), pp. e93079-e93079. [10.1371/journal.pone.0093079]

The "Egg of Columbus" for Making the World's Toughest Fibres

Pugno, Nicola
2014-01-01

Abstract

In this letter we present the "Egg of Columbus" for making fibres with unprecedented toughness: a slider, in the simplest form just a knot, is introduced as frictional element to dissipate additional energy and thus demonstrating the existence of a previously "hidden" toughness. The proof of concept is experimentally realized making the world’s toughest fibre, increasing the toughness modulus of a commercial Endumax macroscopic fibre from 44 J/g up to 1070 J/g (and of a zylon microfiber from 20 J/g up to 1400 J/g). The ideal upperbound toughness is expected for graphene, with a theoretical value of 10^5 J/g. This new concept, able of maximizing (one fold increment) the structural robustness, could explain the mysterious abundance of knot formations, in spite of their incremental energy cost and topological difficulty, in biological evolved structures, such as DNA strands and proteins.
2014
4
Pugno, Nicola
The "Egg of Columbus" for Making the World's Toughest Fibres / Pugno, Nicola. - In: PLOS ONE. - ISSN 1932-6203. - 9:4(2014), pp. e93079-e93079. [10.1371/journal.pone.0093079]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11572/98899
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