137 research outputs found

    Integrated modeling of friction stir welding of 6xxx series Al alloys: Process, microstructure and properties

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    International audienceCompared to most thermomechanical processing methods, friction stir welding (FSW) is a recent technique which has not yet reached full maturity. Nevertheless, owing to multiple intrinsic advantages, FSW has already replaced conventional welding methods in a variety of industrial applications especially for Al alloys. This provides the impetus for developing a methodology towards optimization, from process to performances, using the most advanced approach available in materials science and thermomechanics. The aim is to obtain a guidance both for process fine tuning and for alloy design. Integrated modeling constitutes a way to accelerate the insertion of the process, especially regarding difficult applications where for instance ductility, fracture toughness, fatigue and/or stress corrosion cracking are key issues. Hence, an integrated modeling framework devoted to the FSW of 6xxx series Al alloys has been established and applied to the 6005A and 6056 alloys. The suite of models involves an in-process temperature evolution model, a microstructure evolution model with an extension to heterogeneous precipitation, a microstructure based strength and strain hardening model, and a micro-mechanics based damage model. The presentation of each model is supplemented by the coverage of relevant recent literature. The "model chain" is assessed towards a wide range of experimental data. The final objective is to present routes for the optimization of the FSW process using both experiments and models. Now, this strategy goes well beyond the case of FSW, illustrating the potential of chain models to support a "material by design approach" from process to performances

    Classical big-bounce cosmology: dynamical analysis of a homogeneous and irrotational Weyssenhoff fluid

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    A dynamical analysis of an effective homogeneous and irrotational Weyssenhoff fluid in general relativity is performed using the 1+3 covariant approach that enables the dynamics of the fluid to be determined without assuming any particular form for the space-time metric. The spin contributions to the field equations produce a bounce that averts an initial singularity, provided that the spin density exceeds the rate of shear. At later times, when the spin contribution can be neglected, a Weyssenhoff fluid reduces to a standard cosmological fluid in general relativity. Numerical solutions for the time evolution of the generalised scale factor in spatially-curved models are presented, some of which exhibit eternal oscillatory behaviour without any singularities. In spatially-flat models, analytical solutions for particular values of the equation-of-state parameter are derived. Although the scale factor of a Weyssenhoff fluid generically has a positive temporal curvature near a bounce, it requires unreasonable fine tuning of the equation-of-state parameter to produce a sufficiently extended period of inflation to fit the current observational data.Comment: 34 pages, 18 figure

    Analyse par géomatique des bilans et des flux d'azote et de phosphore dans un bassin versant agricole: le cas de la rivière Boyer.

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    L'essor et la concentration géographique des productions animales, dans certains bassins versant à vocation agricole, génèrent d'imposants volumes de fumiers et de lisiers qui dépassent souvent la superficie de sol disponible pour les valoriser. On assiste alors à une surfertilisation des cultures, qui provoque l'accroissement de la teneur en phosphore du sol, le risque de transfert vers l'environnement ainsi que le lessivage des nitrates. Ces nutriments, lorsqu'ils dépassent un certain niveau, sont responsables de l'eutrophisation des cours d'eau. Cette problématique de pollution diffuse est actuellement largement responsable de la détérioration de la qualité des eaux dans plusieurs régions du Québec. Ce projet de maîtrise a pour objectif d'analyser les bilans et les flux d'azote et de phosphore dans le bassin versant de la rivière Boyer, un bassin où la pollution diffuse a été constatée. Ceci permet d'estimer les stocks d'éléments nutritifs présents et de définir les zones critiques où les pertes vers l'environnement sont les plus susceptibles de se produire. Pour ce faire, nous devons considérer plusieurs données spatiales des différents facteurs qui interviennent, telles que l'occupation du sol, la topographie, la pédologie, les conditions climatiques, les différentes pratiques culturales, etc. Ces informations sont intégrées en exploitant les propriétés des Systèmes d'Information Géographique (SIG) qui tiennent compte de la localisation spatiale des données considérées. Dans le cadre du présent travail, nous exploitons le SIG IDRISI. Afin d'obtenir une représentation réaliste du mode de fonctionnement du bassin versant à l'étude, un bilan des apports et des exportations d'azote et de phosphore et des modèles de pertes annuelles d'azote et de phosphore sont établis au sein du SIG. Les pertes annuelles de phosphore particulaire et soluble peuvent être estimées en intégrant un modèle de perte de sol au SIG. Les pertes annuelles d'azote, par lessivage et ruissellement superficiel, sont estimées à l'aide d'un modèle intégré au SIG, qui est construit à partir de coefficients de pertes tirés de la littérature. Les charges annuelles de phosphore et d'azote sont cumulées sur l'ensemble du bassin versant. Le cumul se fait suivant les directions d'écoulement, qui sont déterminées grâce à un algorithme de drainage interfacé au logiciel IDRISI. Cet algorithme utilise un modèle numérique d'altitude (MNA) pour générer les directions d'écoulement suivant la plus forte pente. Une comparaison entre les valeurs des concentrations d'azote et de phosphore, issues des simulations et des valeurs mesurées en 28 points d'échantillonnage du bassin, permet de discuter des modèles développés et d'établir des relations avec certaines caractéristiques du territoire

    Effect of electron irradiation on vortex dynamics in YBa_2Cu_3O_{7-x} single crystals

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    We report on drastic change of vortex dynamics with increase of quenched disorder: for rather weak disorder we found a single vortex creep regime, which we attribute to a Bragg-glass phase, while for enhanced disorder we found an increase of both the depinning current and activation energy with magnetic field, which we attribute to entangled vortex phase. We also found that introduction of additional defects always increases the depinning current, but it increases activation energy only for elastic vortex creep, while it decreases activation energy for plastic vortex creep.Comment: 4 pages, 3 figures, submited to Phys. Rev.

    Traveling wave solutions in the Burridge-Knopoff model

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    The slider-block Burridge-Knopoff model with the Coulomb friction law is studied as an excitable medium. It is shown that in the continuum limit the system admits solutions in the form of the self-sustained shock waves traveling with constant speed which depends only on the amount of the accumulated stress in front of the wave. For a wide class of initial conditions the behavior of the system is determined by these shock waves and the dynamics of the system can be expressed in terms of their motion. The solutions in the form of the periodic wave trains and sources of counter-propagating waves are analyzed. It is argued that depending on the initial conditions the system will either tend to synchronize or exhibit chaotic spatiotemporal behavior.Comment: 12 pages (ReVTeX), 7 figures (Postscript) to be published in Phys. Rev.

    On the anomalous large-scale flows in the Universe

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    Recent combined analyses of the CMB and galaxy cluster data reveal unexpectedly large and anisotropic peculiar velocity fields at large scales. We study cosmic models with included vorticity, acceleration and total angular momentum of the Universe in order to understand the phenomenon. The Zeldovich model is used to mimic the low redshift evolution of the angular momentum. Solving coupled evolution equations of the second kind for density-contrast in corrected Ellis-Bruni covariant and gauge-invariant formalism one can properly normalize and evaluate integrated Sachs-Wolfe effect and peculiar velocity field. The theoretical results compared to the observations favor a much larger matter content of the Universe than that of the concordance model. Large-scale flows appear anisotropic with dominant components placed in the plane perpendicular to the axis of vorticity(rotation). The integrated Sachs-Wolfe term has negative contribution to the CMB fluctuations for the negative cosmological constant and it can explain the observed small power of the CMB TT spectrum at large scales. The rate of the expansion of the Universe can be substantially affected by the angular momentum if its magnitude is large enough.Comment: 13 pages, 6 tables, 4 figures, 36 references; version to appear in Eur. Phys. J.

    Thermal spin torques in magnetic insulators

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    The damping of spin waves transmitted through a two-port magnonic device implemented on a yttrium iron garnet thin film is shown to be proportional to the temperature gradient imposed on the device. The sign of the damping depends on the relative orientation of the magnetic field, the wave vector, and the temperature gradient. The observations are accounted for qualitatively and quantitatively by using an extension of the variational principle that leads to the Landau-Lifshitz equation. All parameters of the model can be obtained by independent measurements

    Hybrid method for selection of the optimal process of leachate treatment in waste treatment and valorization plants or landfills

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    “The final publication is available at Springer via http://dx.doi.org/10.1007/s10098-014-0834-4”Leachate from waste landfill or treatment plants is a very complex and highly contaminated liquid effluent. In its composition, it is found dissolved organic matter, inorganic salts, heavy metals, and other xenobiotic organic compounds, so it can be toxic, carcinogenic, and capable of inducing a potential risk to biota and humans. European law does not allow such leachate to leave the premises without being depolluted. There are many procedures that enable debugging, always combining different techniques. Choosing the best method to use in each case is a complex decision, as it depends on many tangible and intangible factors that must be weighed to achieve a balance between technical, cost, and environmental sustainability. 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