Academic literature on the topic 'Comportement dynamique des élastomères'
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Journal articles on the topic "Comportement dynamique des élastomères"
Ruch, Frédéric, Marie-Odile David, Marie-France Vallat, and Jacques Schultz. "Autohésion des élastomères : Anomalie de comportement de l'EPDM." Comptes Rendus de l'Académie des Sciences - Series IIB - Mechanics-Physics-Astronomy 327, no. 10 (September 1999): 1089–94. http://dx.doi.org/10.1016/s1287-4620(00)87022-2.
Full textSaad, P. "Modélisation du comportement viscoélastique des élastomères autour d'une précharge." Mécanique & Industries 4, no. 2 (April 2003): 133–42. http://dx.doi.org/10.1016/s1296-2139(03)00031-9.
Full textMerckel, Yannick, Mathias Brieu, and Julie Diani. "Influence des paramètres matériaux sur le comportement des élastomères." MATEC Web of Conferences 7 (2013): 01011. http://dx.doi.org/10.1051/matecconf/20130701011.
Full textCharles, Pascal, and Wasoodev Hoorpah. "Comportement dynamique des passerelles piétonnes." Revue Européenne de Génie Civil 10, no. 8 (September 2006): 959–71. http://dx.doi.org/10.1080/17747120.2006.9692865.
Full textMartinez, J. M., A. Boukamel, S. Meo, and P. Legendre. "Approche multi-fréquentielle du comportement viscoélastique en grandes déformations des élastomères." Journal de Physique IV (Proceedings) 12, no. 11 (December 2002): 267–74. http://dx.doi.org/10.1051/jp4:20020502.
Full textDammak, Fakhreddine, Amine Regaieg, Imen Kamoun Kallel, and Abderrazak Dhieb. "Modélisation de la loi de comportement hyperélastique transversalement isotrope des élastomères." European Journal of Computational Mechanics 16, no. 1 (January 2007): 103–26. http://dx.doi.org/10.3166/remn.16.103-126.
Full textLambert-Diani, Julie, and Christian Rey. "Élaboration de nouvelles lois de comportement pour les élastomères : principe et avantages." Comptes Rendus de l'Académie des Sciences - Series IIB - Mechanics-Physics-Astronomy 326, no. 8 (August 1998): 483–88. http://dx.doi.org/10.1016/s1251-8069(98)80003-3.
Full textDubé, J. F., A. Kanji Nanji, and C. Wielgosz. "Comportement du béton en dynamique rapide." Le Journal de Physique IV 07, no. C3 (August 1997): C3–505—C3–509. http://dx.doi.org/10.1051/jp4:1997387.
Full textFournol, Alain, and Luc Dieleman. "Comportement dynamique de pont-rails courts." Revue Européenne de Génie Civil 9, no. 1-2 (January 2005): 215–32. http://dx.doi.org/10.1080/17747120.2005.9692751.
Full textRousseau, C., R. Belmas, and P. Reynier. "Comportement dynamique d'une composition explosive insensible." Le Journal de Physique IV 04, no. C8 (September 1994): C8–421—C8–426. http://dx.doi.org/10.1051/jp4:1994865.
Full textDissertations / Theses on the topic "Comportement dynamique des élastomères"
Gacem, Hatem. "Comportement visco-hyperélastique des élastomères : viscoélasticité non linéaire, application aux multicouches." Paris 6, 2007. http://www.theses.fr/2007PA066432.
Full textPetiteau, Jean-Christophe. "Caractérisation expérimentale et modélisation du comportement des élastomères en dynamique rapide : application aux plots de suspension." Phd thesis, Ecole centrale de nantes - ECN, 2012. http://tel.archives-ouvertes.fr/tel-00841462.
Full textMorin, Benjamin. "Modélisation de liaisons flexibles amortissantes en élastomères pour la prédiction du comportement dynamique de systèmes complexes." Thesis, Paris, CNAM, 2016. http://www.theses.fr/2016CNAM1067/document.
Full textIn the context of passive damping, various mechanical systems from the space, aeronautic or auto-mobile industry use elastomer components (shock absorbers, silent blocks, flexible joints...).These materials have frequency, temperature and amplitude dependentcharacteristics. The associated numerical models may become computationally too expensive during an optimization process.The aim of this work is to propose an efficient reduced model of rubber devices that account for the viscoelastic damping and the non-linear pre-stress in the dampers.The first part of this thesis is about how to include the viscoelasticdamping in the reduced model. It starts by using a viscoelastic constitutive relation, based on experimental identification, within the frame of the finite element method to obtain a numerical model of the rubber dampers. A first efficient reduced model is then derived from this FE model by using an original extension of sub-structuring methods in the case of viscoelastic damping.In the second part, the influence of non-linear static pre-stress overthe dynamic behavior and the dissipation in the dampers is studied. An hyper-visco-elastic constitutive relation, linearized in the neighbourhood of a pre-stressed state, is developed. The sub-structuring methods presented in the first part are then upgraded to account for the damping and the geometrical non-linearities in the dampers. Finally, these 2-node reduced models give access to greatly reduced computation times (50 to 100 times faster) and are easy to use for the engineer
De, La Chapelle Christophe. "Développement d'une technique torsionnelle dynamique pour l'étude du comportement non-linéaire de matériaux élastomères non-vulcanisés." Paris 6, 2004. http://www.theses.fr/2004PA066180.
Full textHuynh, Kim Long Alex. "Analyse du comportement dynamique d'un élastomère : modélisation et identification." Phd thesis, Ecole des Ponts ParisTech, 2005. http://pastel.archives-ouvertes.fr/pastel-00001265.
Full textJrad, Hanen. "Etude du comportement dynamique non linéaire des composants viscoélastiques : Caractérisation, modélisation et identification." Phd thesis, Ecole Centrale Paris, 2014. http://tel.archives-ouvertes.fr/tel-01017063.
Full textMahaud, Morgane. "Étude par dynamique moléculaire du comportement mécanique et de la rupture d'élastomères irradiés." Thesis, Lyon, 2017. http://www.theses.fr/2017LYSEI048/document.
Full textThe aim of this thesis is to improve the understanding of the links between microstructure and mechanical properties of irradiated degradated elastomeric networks using molecular coarse-grained dynamics. The polymer chains are created by a pseudo-radical polymerization algorithm and then crosslinked by an algorithm which generate a controlled spatial distribution, random or not, of the crosslinking nodes. The process can include the simulation of bond breaks. The equilibration of the networks thus created is then carried out with intergroup forces whose parameters are derived from the work of Kremer and Grest. In the case of random networks, the link between the density of active chains, of pendant chains and the length of the chains portions with the number of crosslinking nodes and the soluble fraction is well described by the appropriate statistical models. Simulated tests of isochronous mechanical spectrometry at different temperatures make it possible to find (i) when the chains are not crosslinked, the influence of the length of the chains on the length of the rubber plateau and on Tα, and (ii) when they are crosslinked , The influence of the crosslinking density on the height of this plateau. The simulated uniaxial tensile tests confirm the relationship between the mechanical modulus and the density of chemical nodes and trapped entanglement nodes. Different processes intervene before failure: in the case of random networks, the break of covalent bonds occurs in a homogeneous manner, then cavitation, striction and finally the failure of bonds in the filaments of the zone of constriction; the elongation at final failure is always close to twice that at the first failure of the bond (itself connected to the modulus of the material). At the same crosslinking density, the behavior at small deformations and hardening is little influenced by a heterogeneous crosslinking by zones. At the same density of chemical nodes, a slight decrease in the Young's modulus is observed for interpenetrating double networks, which can be explained by entanglements; Moreover, they break homogeneously in the most reticulated sub-network. The heterogeneous networks containing more cross-linked spherical zones have ruptures at the interface with the less cross-linked zones which lead to a reduction in the maximum stress reached before total rupture; this is explained by the decrease in the number of percolating paths which can withstand mechanical stress when passing the rigid-> soft interface. In the end, homogeneous systems based on long chains generally show better failure behavior (ultimate elongation and maximum stress) than heterogeneous systems, including dual networks. Moreover, among all the simulated networks, those which are by far the least efficient are the homogeneous networks cut
Papon, Aurélie. "Dynamique dans les élastomères renforcés et conséquences." Phd thesis, Université Pierre et Marie Curie - Paris VI, 2011. http://pastel.archives-ouvertes.fr/pastel-00733056.
Full textVerron, Erwan. "Modélisation du comportement des structures et des matériaux élastomères." Habilitation à diriger des recherches, Université de Nantes, 2003. http://tel.archives-ouvertes.fr/tel-00833719.
Full textRaoult, Ida. "Structures élastomères sous chargement cyclique : comportement, fatigue, durée de vie." Phd thesis, Ecole Polytechnique X, 2005. http://tel.archives-ouvertes.fr/tel-00521633.
Full textBooks on the topic "Comportement dynamique des élastomères"
Ottin, Thierry. Etude et simulation du comportement dynamique de chaufferies. Zürich: Juris, 1986.
Find full textTravail, affection et pouvoir dans les groupes restreints: Le modèle des trois zones dynamiques. Québec: Presses de l'Université du Québec, 2007.
Find full textElementary symbolic dynamics and chaos in dissipative systems. Singapore: World Scientific, 1989.
Find full textInternational Conference on Mechanical and Physical Behaviour of Materials under Dynamic Loading (8th 2006 Dijon, France). 8th International Conference on Mechanical and Physical Behaviour of Materials under Dynamic Loading: 8e Conférence internationale sur le comportement mécanique et physique des matériaux sous sollicitation dynamique : proceedings : DYMAT 2006 : Dijon, France, 11-15 September, 2006. Les Ulis, France: Éditions de physique, 2006.
Find full textInstitut national de la santé et de la recherche médicale (France), ed. Psychothérapie: Trois approches évaluées. Paris: Inserm, 2004.
Find full textCongrès International sur le comportement mécanique et physique des matériaux sous sollicitations dynamiques : 2-5 septembre 1985, Paris, France =: International conference on mechanical and physical behavior of materials under dynamic loading. Cedex: Editions de Physique, 1985.
Find full textS, Bellack Alan, and Hersen Michel, eds. Handbook of comparative treatments for adult disorders. New York: Wiley, 1990.
Find full textBook chapters on the topic "Comportement dynamique des élastomères"
Verdeau, C., and A. Bunsell. "Effet des Conditions D’Elaboration sur le Comportement Mecanique, Statique et Dynamique de Materiaux Composites Hautes Performances a Matrice Thermoplastique Semicristalline." In Developments in the Science and Technology of Composite Materials, 431–40. Dordrecht: Springer Netherlands, 1989. http://dx.doi.org/10.1007/978-94-009-1123-9_59.
Full textTietse, Samuel. "De la médiation documentaire à la navigation numérique : vers une modélisation du comportement informationnel des médecins en contexte hospitalier." In L’information dans les organisations : dynamique et complexité, 235–47. Presses universitaires François-Rabelais, 2008. http://dx.doi.org/10.4000/books.pufr.721.
Full textConference papers on the topic "Comportement dynamique des élastomères"
Buckley, Penelope. "A Systematic Review of Qualitative Studies on Residential Consumer Experience with Smart Meters and Dynamic Pricing." In MOlecules and Materials for the ENergy of TOMorrow. MSH Paris-Saclay Éditions, 2021. http://dx.doi.org/10.52983/yfcz6955.
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