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Finite Strain Shape Memory Alloys Modeling - Scuola di Dottorato in ...

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Fig. 3.1: Reference and deformed configuration for f<strong>in</strong>ite stra<strong>in</strong> problemThe chapter starts by describ<strong>in</strong>g the basic k<strong>in</strong>ematics relations used <strong>in</strong> f<strong>in</strong>itedeformation solid mechanics. This is followed by a summary of <strong>di</strong>fferent stressmeasures related to the reference and deformed configurations and a description ofthe constitutive equations of hyperelastic materials <strong>in</strong> the framework of the f<strong>in</strong>itedeformation.3.2 Govern<strong>in</strong>g Equations3.2.1 K<strong>in</strong>ematics and DeformationThe basic equations for f<strong>in</strong>ite deformation solid mechanics may be found <strong>in</strong> standardreferences on the subject (Mandel, 1974; Simo and Hughes, 1998).A body B is constituted by material po<strong>in</strong>ts whose positions are given by the vectorX <strong>in</strong> a fixed reference configuration. In Cartesian coor<strong>di</strong>nates the position vector isdescribed <strong>in</strong> terms of its components asX= X E ; I = 1,2,3(3.1)II27

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