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Material and structural behaviour of PMMA from low temperatures to over the glass transition: Quasi-static and dynamic loading
Institution:1. Laboratoire d’Innovation Durable et de Recherche Appliquée (L.I.D.R.A), Universiapolis, Bab Al Madina, Qr Tilila, Agadir, Morocco;2. Laboratory of Microstructure Studies and Mechanics of Materials, Lorraine University, 7 rue Félix Savart, 57073 Metz Cedex 03, France;3. Instit Poznan University of Technology, Institute of Structural Engineering, Piotrowo 5, 60-965 Poznan, Poland;4. ENSAM-Arts et Métiers ParisTech, Laboratory of Microstructure Studies and Mechanics of Materials (LEM3), UMR CNRS 7239, 57078 Metz, France
Abstract:This work aims at characterizing the mechanical behaviour of polymethyl-methacrylate (PMMA) under high velocity impact conditions over a wide range of testing temperatures. To this end, the mechanical response at uniaxial compression is studied for both quasi-static and dynamic conditions covering testing temperatures below, at and above glass transition. A pseudo-brittle to ductile transition in the failure of PMMA is observed at a threshold that depends on testing temperature and strain rate. This analysis allows for the interpretation of the perforation impact tests and to explain the principal deformation and failure mechanisms. To complete the study, the Richeton model to predict yielding is revisited. Finally, we provide a new constitutive model for finite deformations to further identify the deformation mechanisms governing the mechanical behaviour of PMMA and the influence of temperature and strain rate on them.
Keywords:PMMA  Impact behaviour  Polymer  Constitutive modelling  Glass transition
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