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Caractérisation microstructurale d'un PEHD semi-cristallin déformé, par tomographie X et diffusion de lumière polarisée

A. Blaise-2011-05-27-Publications Et Travaux Academiques de Lorraine (Universite de Lorraine)

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This thesis mainly concerns the characterization of High Density Polyethylene (HDPE) at the microscopic scale when mechanically solicited. A first part presents a modeling strategy of the polymer behavior that is representative of the observations at the macroscopic scale and adapted to a good metrology of its constitutive parameters. Then, this work focus on investigation techniques that probe the mesoscopic scale (micrometer scale) through a technique (in-situ) based on the transport of incoherent and polarized light (IPSLT) ; and synchrotron X-ray microtomography. The aim is to understand the phenomena that take place at this scale during the successive phases of matter transformation (which switch from a homogeneous biphasic quasi-isotropic state to a very anisotropic fibrillar mesostructure). We show that this polymer does not exhibit any cavitation phenomena and that contrary to most of the results published in the literature, whitening which can be observed macroscopically is no

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This thesis mainly concerns the characterization of High Density Polyethylene (HDPE) at the microscopic scale when mechanically solicited. A first part presents a modeling strategy of the polymer behavior that is representative of the observations at the macroscopic scale and adapted to a good metrology of its constitutive parameters. Then, this work focus on investigation techniques that probe the mesoscopic scale (micrometer scale) through a technique (in-situ) based on the transport of incoherent and polarized light (IPSLT) ; and synchrotron X-ray microtomography. The aim is to understand the phenomena that take place at this scale during the successive phases of matter transformation (which switch from a homogeneous biphasic quasi-isotropic state to a very anisotropic fibrillar mesostructure). We show that this polymer does not exhibit any cavitation phenomena and that contrary to most of the results published in the literature, whitening which can be observed macroscopically is no

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