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Academic literature on the topic 'Dégradation de PU'
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Journal articles on the topic "Dégradation de PU"
Lévesque, Jacques, and Yann Breault. "La multipolarité et sa tournure « revanchiste » dans la politique internationale de la Russie : ses causes, son cheminement et les options du Canada." Études internationales 47, no. 4 (October 26, 2017): 431–50. http://dx.doi.org/10.7202/1042056ar.
Full textMerabet, Smail, Abdelkrim Bouzaza, Mohamed Bouhelassa, and Dominique Wolbert. "Modélisation et optimisation de la photodégradation du 4-méthylphénol dans un réacteur à recirculation en présence d’UV/ZnO." Revue des sciences de l'eau 22, no. 4 (October 22, 2009): 565–73. http://dx.doi.org/10.7202/038331ar.
Full textPaing, J., J. P. Sambuco, R. Costa, A. Rambaud, and B. Picot. "Bilan du carbone dans le lagunage anaérobie appliqué sous climat méditerranéen." Revue des sciences de l'eau 16, no. 3 (April 12, 2005): 357–68. http://dx.doi.org/10.7202/705512ar.
Full textPayette, Serge, and Maurice K.-Seguin. "Les buttes minérales cryogènes dans les basses terres de la rivière aux Feuilles, Nouveau-Québec." Géographie physique et Quaternaire 33, no. 3-4 (January 25, 2011): 339–58. http://dx.doi.org/10.7202/1000369ar.
Full textLABBÉ, L., F. LEFÈVRE, J. BUGEON, A. FOSTIER, M. JAMIN, and M. GAUMÉ. "Conception d’un système innovant de production de truites en eau recirculée." INRAE Productions Animales 27, no. 2 (June 2, 2014): 135–46. http://dx.doi.org/10.20870/productions-animales.2014.27.2.3061.
Full textTsayem Demaze, Moïse. "La Redd+ au Brésil : entre construction du cadre institutionnel et foisonnement des projets pilote." BOIS & FORETS DES TROPIQUES 316, no. 316 (June 1, 2013): 17. http://dx.doi.org/10.19182/bft2013.316.a20527.
Full textALEXANDRE, G., G. AUMONT, J. FLEURY, O. COPPRY, P. MULCIBA, and A. NEPOS. "Production semi-intensive au pâturage de caprins à viande en zone tropicale humide : le cas des cabris Créoles sur pangola (Digitaria decumbens) en Guadeloupe." INRAE Productions Animales 10, no. 1 (February 7, 1997): 43–53. http://dx.doi.org/10.20870/productions-animales.1997.10.1.3976.
Full textBEBIN, D., M. LHERM, and G. LIENARD. "Quels résultats techniques et économiques en grands troupeaux de vaches allaitantes ? Le cas du Charolais." INRAE Productions Animales 8, no. 3 (June 23, 1995): 213–26. http://dx.doi.org/10.20870/productions-animales.1995.8.3.4129.
Full textLoubota Panzou, Grace Jopaul. "Biomasse et stocks de carbone en Afrique centrale : importance de l’allométrie des arbres." BOIS & FORETS DES TROPIQUES 343 (March 31, 2020): 85–86. http://dx.doi.org/10.19182/bft2020.343.a31853.
Full textMiallier, Didier. "Variations récentes de niveau du lac Pavin : essai de mise en cohérence des différentes sources d’information." BSGF - Earth Sciences Bulletin 191 (2020): 4. http://dx.doi.org/10.1051/bsgf/2020006.
Full textDissertations / Theses on the topic "Dégradation de PU"
Dubelley, Florence. "Mécanismes de dégradation des enveloppes barrières pour application panneaux isolants sous vide." Thesis, Université Grenoble Alpes (ComUE), 2016. http://www.theses.fr/2016GREAI007/document.
Full textVacuum Insulation Panels (VIPs) were already developed some time ago for low-temperature applications such as refrigerators. More recently, they have been used for the building application. They consist of a fine powder or fiber core material (fumed silica, glass fiber, PU foam) enveloped by a polymer-metal. The latter is responsible for preventing gas and water molecules from breaking the vacuum. Nevertheless, the use of VIPs for this application was limited for applications in severe conditions as for example: temperature, humidity and mechanical load. At high temperature and/or humidity, the most critical component of a VIP is the envelope: both for the tightness point of view and for its degradation. Consequently in these conditions, the vacuum was degraded and durability of the panel performance was decreased sharply.This work focuses on the degradation mechanisms of the polymer-metal envelope. The effect of hygrothermal ageing (70 °C and 90 %RH) on envelope was investigated at different scales: Microscopic: High humidity is at the origin of the hydrolysis of some components such as Polyethylene terephthalate (PET) and polyurethane adhesive (PU). Hydrolysis is directly at the origin of the changes mechanical properties, leading to embrittlement of the complex. An additional microstructural modifications was evidence in PET at high humidity and also contributes to embrittlement of the complex. Macroscopic: shrinkage of polymer film seems to be the origin of debonding in polymer-metal multilayer
Vafiadès, Virginie. "Caractérisations microstructurale et mécanique de mousses de nickel à cellules ouvertes pour batteries de véhicules hybrides." Paris, ENMP, 2004. http://www.theses.fr/2004ENMP1199.
Full textThe nickel foam production at NiTECH starts with a 10 microns thick coating of nickel onto an open-cell polyurethane foam. The major aim of this study is to reduce the costs of production. For that purpose, the thermal degradation of the polyurethane foam is studied by thermogravimetric analysis and involves three superimposed phenomena. Afterwards, the three phenomena are separated and the thermal degradation is modeled. The dependence of the mechanical behavior of nickel foams upon grain size is studied. The foam walls being very thin, the result is compared with that of nickel foils. Once the microstructure becomes "bamboo", the yield strength remains constant. A mechanical model is finally presented incorporating the grain size effect. Besides, an other application of nickel foam could be found in the fuel cells operating at high temperatures. Tensile creep tests were carried out and the creep parameters were estimated experimentally and incorporated in two mechanical models