Journal
MECHANICS OF MATERIALS
Volume 101, Issue -, Pages 118-135Publisher
ELSEVIER SCIENCE BV
DOI: 10.1016/j.mechmat.2016.07.003
Keywords
Ultra-micro indentation; Interferometric microscopy; Experimental/numerical approach; Polymer constitutive law identification; Viscoelastic and softening polymer behaviour; Isothermal ageing in oxidative environment
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Funding
- LABEX INTERACTIFS French Governmental program [ANR-11-LABX-0017-01]
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This paper presents an original coupled experimental/numerical approach for the characterization of the effects of thermo-oxidation on the local mechanical behaviour of aged polymer materials. The experimental approach is based on ultra-micro indentation (UMI) and interferometric microscopy (IM) tests. The UMI load vs. displacement curve is exploited to gain some information about the material behaviour at the short-range timescales, the IM measurement of the three-dimensional indentation print and of its evolution with time allows characterizing the material behaviour at the long-range timescales. The numerical approach is based on an ageing dependent nonlinear viscoelastic/softening constitutive law developed within the framework of the Thermodynamics of Irreversible Processes (TIP) with Internal Variables (TIV). The constitutive law is integrated within a 3D ABAQUS (R) finite element model of the test setup and the parameters of the law are identified for different ageing conditions. (C) 2016 Elsevier Ltd. All rights reserved.
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