We discuss the mechanics of a single dislocation in quasicrystals. We account for dislocation's core by means of a non-constant line energy. Above all we focus attention on the origin of the balance equations involving the pertinent bulk and line actions. We derive all balances, including those of congurational actions along the dislocation line, from a unique invariance requirement for the so-called relative power; it is an axiom that furnishes also the action-reaction principle for the standard traction and the phason one, as well as the standard Cauchy theorem and, in addition, the existence of phason stress and self-action. The theoretical scheme presented here includes the description of the large core of metadislocations in quasicrystal's approximants (complex metallic alloys). Each metadislocation features about thousands of atoms per unit thickness in the direct vicinity of the core, a circumstance suggesting to consider it as a sort of micro-rod, a view adopted in the present paper. In fact, from an abstract point of view, the results presented here describe the motion of a od" within a body with vectorial microstructure.

Mechanics of dislocations and metadislocations in quasicrystals and their approximants: power invariance and balance / Paolo Maria Mariano. - In: CONTINUUM MECHANICS AND THERMODYNAMICS. - ISSN 0935-1175. - STAMPA. - 31:(2019), pp. 373-399. [10.1007/s00161-018-0690-2]

Mechanics of dislocations and metadislocations in quasicrystals and their approximants: power invariance and balance

Paolo Maria Mariano
2019

Abstract

We discuss the mechanics of a single dislocation in quasicrystals. We account for dislocation's core by means of a non-constant line energy. Above all we focus attention on the origin of the balance equations involving the pertinent bulk and line actions. We derive all balances, including those of congurational actions along the dislocation line, from a unique invariance requirement for the so-called relative power; it is an axiom that furnishes also the action-reaction principle for the standard traction and the phason one, as well as the standard Cauchy theorem and, in addition, the existence of phason stress and self-action. The theoretical scheme presented here includes the description of the large core of metadislocations in quasicrystal's approximants (complex metallic alloys). Each metadislocation features about thousands of atoms per unit thickness in the direct vicinity of the core, a circumstance suggesting to consider it as a sort of micro-rod, a view adopted in the present paper. In fact, from an abstract point of view, the results presented here describe the motion of a od" within a body with vectorial microstructure.
2019
31
373
399
Paolo Maria Mariano
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/1129762
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