Academic literature on the topic 'Renforcement choc'
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Journal articles on the topic "Renforcement choc"
Peyre, P., P. Merrien, H. P. Lieurade, R. Fabbro, and A. Bignonnet. "Renforcement d'alliages d'aluminium moulés par ondes de choc laser." Matériaux & Techniques 81, no. 6 (1993): 7–12. http://dx.doi.org/10.1051/mattech/19938106007.
Full textBas, Anne-Charlotte. "L’accès aux soins bucco-dentaires dans la réforme 100 % santé : contexte et perspectives." Santé Publique 35, HS1 (December 1, 2023): 119–24. http://dx.doi.org/10.3917/spub.hs1.2023.0119.
Full textBeaudouin, Valérie, and Winston Maxwell. "La prédiction du risque en justice pénale aux états-unis : l’affaire propublica-compas." Réseaux N° 240, no. 4 (September 21, 2023): 71–109. http://dx.doi.org/10.3917/res.240.0071.
Full textSchirrer, R., and C. Fond. "Quelques aspects de la rupture des polymères : craquelures, microcisaillements et renforcement aux chocs." Revue de Métallurgie 92, no. 9 (September 1995): 1027–42. http://dx.doi.org/10.1051/metal/199592091027.
Full textMartin, Régis, Nadine Richez-Battesti, and Emmanuel Mermet. "Euro et degré de corporatisme dans la négociation salariale." Études internationales 37, no. 3 (February 20, 2007): 399–422. http://dx.doi.org/10.7202/014239ar.
Full textGuerzoni, Benedetta, and Giorgia Mangani. "Renforcer la résilience climatique et sanitaire mondiale : le rôle de la coopération économique multilatérale." Revue d'économie financière N° 151, no. 3 (November 8, 2023): 129–42. http://dx.doi.org/10.3917/ecofi.151.0129.
Full textGros, Daniel, and Niels Thygesen. "Vers l'union monétaire européenne : pourquoi et comment ?" Revue de l'OFCE 33, no. 4 (September 1, 1990): 131–53. http://dx.doi.org/10.3917/reof.p1990.33n1.0131.
Full textSichel, Amarynth, Adele Waugaman, Robert Rosenbaum, Joy Kamunyori, Emily Lark Harris, Marc Cunningham, Folake Olayinka, and Beth Tritter. "How emergency digital health and data use investments can strengthen health systems and support global health security." Oxford Open Digital Health 2, S1 (2024): i1—i6. http://dx.doi.org/10.1093/oodh/oqae004.
Full textdo Nascimento, Nena, Amarynth Sichel, Adele Waugaman, Joy Kamunyori, Robert Rosenbaum, Jessica Shearer, Emily Carnahan, et al. "Learning from digital health investments during COVID-19 vaccine program implementation: a research collaboration and theory of change." Oxford Open Digital Health 2, S1 (2024): i7—i15. http://dx.doi.org/10.1093/oodh/oqae005.
Full textDelbeque, Bernard. "Numéro 13 - juin 2003." Regards économiques, October 12, 2018. http://dx.doi.org/10.14428/regardseco.v1i0.16163.
Full textDissertations / Theses on the topic "Renforcement choc"
Fillot, Louise-Anne. "Compréhension des mécanismes de renforcement au choc du PVC rigide." Lyon, INSA, 2005. http://www.theses.fr/2005ISAL0090.
Full textPVC gelation describes the evolution of the microstructure during processing under heating and shearing conditions. Gelation level characterisation is very important because it affects impact performance to a great extent: in notched tests, an optimum performance is obtained at moderate gelation level, whereas in unnotched tests, impact performance increases with gelation level until a saturation value has been reached. The analysis of this difference observed in notched and unnotched tests has lead to an original damage scenario of PVC implying the cavitation of PVC matrix. The role of acrylic core-shell impact modifiers has then been investigated, the modifiers acting both during the processing (impact modifiers effects on PVC microstructure) and during the impact solicitation (impact reinforcement mechanisms)
GERVAT, LAURENT. "Structure, proprietes mecaniques et renforcement au choc du poly (terephtalate de butylene glycol)." Paris 6, 2001. http://www.theses.fr/2001PA066101.
Full textMeyer, Jean-Philippe. "Étude expérimentale du renforcement du polyéthylène téréphtalate par des élastomères coeur-coquille ; relations microstructure - résistance au choc." ENSMP, 1999. http://www.theses.fr/1999ENMP0862.
Full textGonçalves, Marques Gabriela. "Effet du recyclage mécanique sur la modification structurale et le comportement mécanique du PET vierge et renforcé choc." Electronic Thesis or Diss., Lyon 1, 2024. http://www.theses.fr/2024LYO10273.
Full textRecycling is today one of the possibilities for limiting the environmental impact of plastic wastes. In this context, polyethylene terephthalate (PET) is in the spotlight, being the most recycled polymers in the word. Despite the efforts spent in recycling this material, many technical challenges still restrain its industrial development. This research work intends to better understand the limitations of the mechanical recycling of PET and to offer innovative technical solutions for these drawbacks. The ambition of this project is to extend the use of acrylic-based impact modifiers to boost the mechanical performances of PET while studying their recycling potential. The first experimental phase of this research focus on clarifying the relationship between structural modification caused by successive reprocessing cycles and the mechanical response of recycled PET (rPET). Then, the introduction of low concentration of additives is assessed. Two different reinforcement strategies based in impact modifiers, reactive or nonreactive, are investigated and their performances compared. Finally, the reprocessing potential of the produced blends is also identified. The contribution of the presence of impact modifiers on the different structural modifications observed previously can help to better understand their action and the different mechanisms taking place. Throughout this work, processing parameters and the rheological response of the blends are discussed. Thermal transitions and the morphology of the blends also guide their understanding. Finally, aspects such as the effect of the physical aging of the PET matrix are investigated. The main objective of this PhD work is, therefore, to expand the recycling possibilities of PET, facilitating it without affecting its ecological balance
Books on the topic "Renforcement choc"
Ontario. Esquisse de cours 12e année: Sciences de l'activité physique pse4u cours préuniversitaire. Vanier, Ont: CFORP, 2002.
Find full textOntario. Esquisse de cours 12e année: Technologie de l'information en affaires btx4e cours préemploi. Vanier, Ont: CFORP, 2002.
Find full textOntario. Esquisse de cours 12e année: Études informatiques ics4m cours préuniversitaire. Vanier, Ont: CFORP, 2002.
Find full textOntario. Esquisse de cours 12e année: Mathématiques de la technologie au collège mct4c cours précollégial. Vanier, Ont: CFORP, 2002.
Find full textOntario. Esquisse de cours 12e année: Sciences snc4m cours préuniversitaire. Vanier, Ont: CFORP, 2002.
Find full textOntario. Esquisse de cours 12e année: English eae4e cours préemploi. Vanier, Ont: CFORP, 2002.
Find full textOntario. Esquisse de cours 12e année: Le Canada et le monde: une analyse géographique cgw4u cours préuniversitaire. Vanier, Ont: CFORP, 2002.
Find full textOntario. Esquisse de cours 12e année: Environnement et gestion des ressources cgr4e cours préemploi. Vanier, Ont: CFORP, 2002.
Find full textOntario. Esquisse de cours 12e année: Histoire de l'Occident et du monde chy4c cours précollégial. Vanier, Ont: CFORP, 2002.
Find full textOntario. Esquisse de cours 12e année: Géographie mondiale: le milieu humain cgu4u cours préuniversitaire. Vanier, Ont: CFORP, 2002.
Find full textBook chapters on the topic "Renforcement choc"
"Enjeux politiques liés au renforcement de l'intégration commerciale et financière au plan international : faire face aux chocs et aux retombées économiques." In Perspectives économiques de l'OCDE, 55–104. OECD, 2018. http://dx.doi.org/10.1787/eco_outlook-v2018-1-3-fr.
Full textReports on the topic "Renforcement choc"
Bolton, Laura, and James Georgalakis. Les répercussions socioéconomiques de la Covid-19 dans les pays à revenu faible ou intermédiaire. Institute of Development Studies, October 2022. http://dx.doi.org/10.19088/core.2022.012.
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