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Dialogue essais-simulation et identification de lois de comportement ...

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Partie B – Chapitre 6 : Analyse <strong>de</strong> sensibilité aux paramètres <strong>de</strong> la loi <strong>de</strong> <strong>comportement</strong><br />

L’analyse <strong>de</strong> sensibilité a permis <strong>de</strong> préparer le développement <strong>de</strong> l’algorithme<br />

d’<strong>i<strong>de</strong>ntification</strong> inverse qui sera présenté dans le chapitre 7-B pour la détermination <strong>de</strong>s<br />

paramètres superélastiques.<br />

6.5. Bibliographie<br />

(Chemisky 2009) Chemisky Y. (2009). Modélisation du <strong>comportement</strong> macroscopique <strong>de</strong>s alliages à<br />

mémoire <strong>de</strong> forme - Application aux matériaux composite. Thèse <strong>de</strong> doctorat, Université Paul Verlaine<br />

<strong>de</strong> M<strong>et</strong>z.<br />

(Chemisky <strong>et</strong> al. 2011) Chemisky Y., Duval A., Patoor E. <strong>et</strong> Ben Zineb T. (2011). Constitutive mo<strong>de</strong>l for<br />

shape memory alloys including phase transformation, martensitic reorientation and twins<br />

accommodation. Mechanics of Materials. 43, 361-376.<br />

pastel-00910076, version 1 - 27 Nov 2013<br />

(Hill 1963) Hill R. (1963). Elastic properties of reinforced solids: some theor<strong>et</strong>ical principles. J. of<br />

Mechanics and Physics of Solids, 11, 357–372.<br />

(Lemaitre <strong>et</strong> Chaboche, 2002) Lemaitre J. <strong>et</strong> Chaboche J.-L. (2002). Mechanics of Solid Materials.<br />

Cambridge University Press.<br />

(Peultier <strong>et</strong> al. 2006) Peultier B., Ben Zineb T. <strong>et</strong> Patoor E. (2006). Macroscopic constitutive law of<br />

shape memory alloy thermomechanical behaviour. Application to structure computation by FEM.<br />

Mechanics of Materials, (38):510–524.<br />

(Sire<strong>de</strong>y <strong>et</strong> al. 1999) Sire<strong>de</strong>y N., Patoor E., Berveiller M. <strong>et</strong> Eberhardt A. (1999). Constitutive equations<br />

for polycrystalline thermoelastic shape memory alloys: Part I. Intragranular interactions and behavior<br />

of the grain. Int. J. of Solids and Structures, 36, 4289–4315.<br />

(Wack <strong>et</strong> al. 1983) Wack B., Terriez J. <strong>et</strong> Guelin P. (1983). A hereditary type, discr<strong>et</strong>e memory,<br />

constitutive equation with applications to simple geom<strong>et</strong>ries. Acta Mech. 50, 9–37.<br />

(Wu <strong>et</strong> al. 2003) Wu X.D., Sun G.J. <strong>et</strong> Wu J.S. (2003). The nonlinear relationship b<strong>et</strong>ween<br />

transformation strain and applied stress for nitinol, Materials L<strong>et</strong>ters 57, 1334-1338.<br />

176

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