Sommaire
Littérature scientifique sur le sujet « Ségrégation du carbone »
Créez une référence correcte selon les styles APA, MLA, Chicago, Harvard et plusieurs autres
Consultez les listes thématiques d’articles de revues, de livres, de thèses, de rapports de conférences et d’autres sources académiques sur le sujet « Ségrégation du carbone ».
À côté de chaque source dans la liste de références il y a un bouton « Ajouter à la bibliographie ». Cliquez sur ce bouton, et nous générerons automatiquement la référence bibliographique pour la source choisie selon votre style de citation préféré : APA, MLA, Harvard, Vancouver, Chicago, etc.
Vous pouvez aussi télécharger le texte intégral de la publication scolaire au format pdf et consulter son résumé en ligne lorsque ces informations sont inclues dans les métadonnées.
Articles de revues sur le sujet "Ségrégation du carbone"
Essouni, M., et A. Mosser. « Ségrégation du carbone et du silicium sur la face (100) d'un alliage Fe-Si interprétation par le modèle de Guttmann ». Revue de Physique Appliquée 21, no 4 (1986) : 257–61. http://dx.doi.org/10.1051/rphysap:01986002104025700.
Texte intégralThèses sur le sujet "Ségrégation du carbone"
Louin, Jean-Charles. « Effets d'hétérogénéités de teneur en carbone sur les cinétiques de transformations de phase et sur la genèse des contraintes internes lors du refroidissement d'aciers ». Vandoeuvre-les-Nancy, INPL, 2003. http://www.theses.fr/2003INPL077N.
Texte intégralHeat treatment is a process that needs the control of both final microstructures and residual stresses and deformations. Numerical simulation is a useful tool for a better optimization of this process. The aim of our work was to contribute to the development of a numerical tool for the prediction of microstructures, stresses and strains during cooling of pieces that may contain chemical heterogeneities, particularly carbon content heterogeneities. Firstly, an existing model for the prediction of transformation kinetics in steels has been further developped in order to take into account the effects of the carbon content enrichment of austenite due to a partial ferritic transformation on the subsequent transformations. Coupled thermal, metallurgical, mechanical calculations have then been performed to study the effects of carbon content gradients on the microstructural evolutions and on the residual stresses development during cooling. Particularly, the possible effects of solidification macro and mesosegregations have been quantified in massive cylinders with sizes close to the size of an ingot. Secondly, experimental validations have been performed for homogeneous cylindrical specimen (40CrMnMo8 steel) and for a chemically heterogeneous specimen specifically designed for our study. The complete set of input data necessary for the simulations has been established from experimental characterizations of the steel. The role of chemical heterogeneity has been analysed through the experimental and calculated results. Finally, a good correlation has been obtained between measurements and calculation of the deformation during cooling of a 3D "croissant" shaped specimen
Aguiar, Veiga Roberto Gomes de. « Computational insights into the strain aging phenomenon in bcc iron at the atomic scale ». Thesis, Lyon, INSA, 2011. http://www.theses.fr/2011ISAL0084/document.
Texte intégralStatic strain aging is an important concept in metalurgy that refers to the hardening of a material that has undergone plastic deformation and then is aged for a certain period of time. A theory proposed in the late 1940s by Cottrell and Bilby explains this phenomenon as being caused by the pinning of dislocations by impurities (e.g., carbon atoms in solid solution) that migrate to the vicinity of the line defect. In the course of this PhD work, the atomistic mechanism behind the static strain aging phenomenon in bcc iron has been studied by means of computer simulations. Given the fact that diffusion in the solid state proceeds slowly, thus preventing the use of molecular dynamics at low temperatures (when the effect of the dislocation stress field on carbon diffusion is more pronounced), we have preferentially employed a method coupling molecular statics with atomistic kinetic Monte Carlo. Three major points have been addressed by this thesis: (i) the effect of the stress field of an edge or screw dislocation on a carbon atom diffusing nearby; (ii) the diffusion of a carbon atom in the tight channel found in the dislocation core (pipe diffusion); and (iii) the equilibrium carbon distribution in a Cottrell atmosphere. The main effect of the dislocation stress field outside the dislocation core consists of biasing carbon diffusion, such that some transitions become more likely than others. This effect is expected to drive the early stages of Cottrell atmosphere formation, when the mutual interaction between carbon atoms is negligible. Right in the dislocation core, as expected, carbon was seen to diffuse faster than in the bulk. Carbon concentration in the neighborhood of an edge or a screw dislocation was modeled by an approach based in statistical physics using the binding energies calculated by molecular statics, revealing a good agreement with experimental data obtained by atom probe techniques
Cheng, Hui. « Développement des microstructures et microségrégations lors de la solidification des aciers inoxydables : influence de la vitesse de solidification et du carbone ». Vandoeuvre-les-Nancy, INPL, 1992. http://www.theses.fr/1992INPL112N.
Texte intégralBorges, Gomes Lima Yuri. « Μοdélisatiοn atοmistique de la transfοrmatiοn de phase austénite-ferrite dans les aciers ». Electronic Thesis or Diss., Normandie, 2024. http://www.theses.fr/2024NORMR086.
Texte intégralThis thesis applies the Quasiparticle Approach (QA) to investigate the atomic scale mechanisms driving the phase transformation from FCC to BCC structures in iron. Initially, the study focuses on pure iron, providing detailed results into the nature and role of dislocations, at the FCC-BCC interface. It was shown that the FCC-BCC interface is semi-coherent and stepped, with two sets of transformations dislocations at the interface. The QA framework reveals how each orientation relationship (OR) influences the interface characteristics. Although the ORs displayed different interface structures, all were ultimately found to follow the same atomic transformation path, driven by the glide of transformation dislocations at the interface. It was concluded that the complete FCC to BCC phase transformation involves the action of the Kurdjumov-Sachs (KS) transformation mechanism in two variants along the two sets of dislocations, with the Kurdjumov-Sachs-Nishiyama (KSN) mechanism emerging as the average of the two KS mechanisms. This detailed description served as a basis for the study of Fe-C systems, where carbon segregation at the interface was observed. Moreover, it was shown that the carbon concentration profiles were consistent with local equilibrium conditions at the interface
Lamontagne, Aude. « Etude des mécanismes physiques responsables des évolutions microstructurales des aciers perlitiques au cours du tréfilage et du vieillissement post-tréfilage ». Thesis, Lyon, INSA, 2014. http://www.theses.fr/2014ISAL0109/document.
Texte intégralSteelcords are produced by assembling cold-drawn pearlitic steel wires with a composition close to the eutectoid one. The cold-drawing step has two goals: it provides the final shape of the wire and its very high mechanical resistance (about 3500 MPa for wires with a diameter of 200 µm). Nowadays, the industrial target aims at achieving a mechanical resistance of about 5000 MPa in order to lower the quantity of steelcord introduced into tires so decreasing their weight and their cost. However, there are two major obstacles to obtaining these ultra-high strength wires. Indeed, the steel reinforcement during cold-drawing induces significant microstructural and mechanical evolutions, which embrittle the wires. This phenomenon is considered as the limit of drawability beyond which wires cannot be plastically deformed anymore. In addition to that, post-drawing ageing can also induce a microstructural evolution and a loss of ductility due to storage at room temperature or during heat treatments at low temperatures (< 200°C). This instability of the wires microstructure can be very damaging for the assembly step leading to wire breakage. The aim of this work was to contribute to the assessment of the microstructural evolution responsible for the variations of mechanical properties that appear during drawing and post-drawing ageing. To achieve this goal, an original experimental approach combining global and indirect characterization techniques (thermoelectric power, electrical resistivity, mechanical spectroscopy, calorimetry…) with Atom Probe Tomography analyses has been set up in order to provide a range of evidences that converge towards a unique scenario to interpret the different microstructural evolution. It was thus shown that cold-drawing leads to cementite dissolution inducing over saturation of ferrite in carbon atoms. This non-equilibrium microstructure tends to return to a more stable state during post-drawing ageing through three different ageing mechanisms: the segregation of carbon atoms on microstructural defects, the precipitation of secondary carbides and their transformation in cementite