Rotational Moulding of Thermosets: Understanding of a Reactive Forming Process
Communication avec acte
Résumé
Physical and chemical transformations of polyurethane thermoset are studied by means of thermal analysis, infrared spectrophotometer and dynamic rheology. Gel point, which limits the material flow, is given as a function of conversion and as a function of time by kinetic law. Glass transition corresponding to a dramatic transformation of the material is also explored and connected to conversion and time. These ex situ characterizations are then exploited in terms of rotational moulding process parameters to improve the understanding and thus the control of the process. Therefore in situ thermal analyses are handled to confirm first results. Final parts thickness distribution is examined as a quantitative parameter of process quality. Finally, as a perspective, ultrasonic response is also studied as a new way to follow material evolution directly in the forming mould.
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Article dans une revue avec comité de lectureFARZANEH, Sedigheh; ABDALLAH-ELHIRTSI, Sofiane; ESMAEILLOU, Bardia; NONY, Fabien; BARON, A; TCHARKHTCHI, Abbas (Taylor & Francis, 2014)This study concerns the effect of thermal aging on mechanical properties of polyurethane. Polyurethane samples were exposed at 85° and 120°C under inert atmosphere. Mechanical tests were carried out on these samples the ...
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Article dans une revue avec comité de lectureHAMIDI, A.; FARZANEH, Sedigheh; NONY, Fabien; ORTEGA, Zaida; MONZON, M.; TCHARKHTCHI, Abbas; BAKIR, Farid; KHELLADI, Sofiane (Springer Verlag, 2015)This paper concerns the study of sintering phenomenon during rotational molding of polypropylene(PP),Polyvinylidenefluoride (PVDF) and Polymethyl methacrylate (PMMA). First, the coalescence (first step of sintering) of two ...
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