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Rheological constitutive equation of solids: a link between models based on irreversible thermodynamics and on fractional order derivative equations
Authors:Stéphane?André  author-information"  >  author-information__contact u-icon-before"  >  mailto:Stephane.Andre@ensem.inpl-nancy.fr"   title="  Stephane.Andre@ensem.inpl-nancy.fr"   itemprop="  email"   data-track="  click"   data-track-action="  Email author"   data-track-label="  "  >Email author,Yves?Meshaka,Christian?Cunat
Affiliation:(1) LEMTA-UMR CNRS 7563, avenue de la forêt de Haye, 2, 54504 Vandoeuvre Lès Nancy, France
Abstract:In this paper we focus on the rheological problem of defining a constitutive equation for viscoelastic materials. In this simple case, we show that writing the dissipative component of the observable response to a given excitation as the result of multiple internal processes working for equilibrium recovery (flux of internal hidden variables), can yield a recursive series in time. This can be obtained when use is made of the theorem of created entropy equipartition as a model for fluctuation regression. A distribution (spectrum) for relaxation times naturally follows. The model thus obtained reflects the concept of a hierarchically constrained dynamic behavior. The conclusion is that the operator of non-integer differentiation in time applied to field variables can also be recovered from pure thermodynamic considerations.
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