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Rozprawy doktorskie na temat "Fabrication par dépôt de matière fondue":
Le, Boterff Julien. "Compréhension des phénomènes physico-chimiques impliqués dans la réalisation de pièces polyoléfines par fabrication additive". Electronic Thesis or Diss., Ecole nationale supérieure Mines-Télécom Lille Douai, 2019. http://www.theses.fr/2019MTLD0012.
Additive Manufacturing (AM) concerns are growing the last years due to the capabilities brought by the technology. Indeed, the AM processes offer the possibility to simply and rapidly create 3D parts with specific geometries, difficult or impossible to obtain with conventional processes. A new technology called Freeformer supplied by ARBURG (Germany) allows to manufacture high quality 3D parts using standard-commercial pellets. Contrary to the standard FDM processes, feedstock materials are cheap and any thermoplastic polymer can be theoretically employed. The Freeformer technology is based on two injection molding units that enables to melt the standard pellets and to feed the printing head. The discharge unit featuring a pulsed nozzle closure generates small (down to 200 μm) molten polymer droplets to build, layer-by-layer, three-dimensional parts in a thermoregulated chamber. Even if 3D parts are easily fabricated by using standard materials (ABS, TPU, …), the process parameters have to be optimized before getting good-quality parts with all other polymers, which consumes times and materials. In the same way than for a conventional polymer processing technology the choice of appropriate grades and the optimization of the associated processing parameters are needed. Hence, the different phenomenon which occur during a part realisation have to be examined in the case of a non-standard material in AM: polypropylene (PP). To optimize the structure and the mechanical properties of the parts, a common approach is to practice a parametric study. This time-consuming approach is not always efficient. Thus, the aim of this work, cofounded by the Région Hauts de France, is to understand the correlations between materials properties and process parameters
Le, Berre Maël. "Dépôt de matière et formation de motifs sur une surface solide : Méthodes microfluidiques, Contrôle par forces capillaires et Génération de vésicules géantes". Phd thesis, Université Pierre et Marie Curie - Paris VI, 2009. http://tel.archives-ouvertes.fr/tel-00388698.
Dans la première partie du manuscrit, nous présentons une méthode originale, la micro-aspiration, permettant de réaliser des assemblages réversibles de canaux microfluidiques sur un substrat et servir à guider les liquides. Nous avons étudié les propriétés de ces systèmes avec des modèles physiques simples et appliqué ces phénomènes à la micromanipulation de liquides, le dépôt de protéines à diverses concentrations sur un substrat, la fabrication de motifs de polymères, nanoparticules, gels, etc.
Dans la seconde partie, nous avons exploré des nouvelles méthodes de dépôt de films de phospholipides multicouches sur des substrats solides et les avons appliqués à la fabrication de vésicules unilamellaires géantes de taille contrôlée. Tout d'abord, l'adaptation de techniques conventionnelles (micro-contact printing, moulage, etc.) a permis d'obtenir des motifs de phospholipides de taille micrométrique. Les dépôts ont ensuite été réalisés par retrait d'un ménisque en situation d'évaporation (assemblage capillaire). Nous avons identifié deux régimes de dépôt en fonction de l'importance relative des forces visqueuses et de l'évaporation, permettant un contrôle de l'épaisseur du film jusqu'à 200 nm à la bicouche près. L'émergence d'instabilités de mouillage ou le guidage sur micro-structures ont permis en outre de réaliser des motifs variés. En utilisant des substrats comme électrodes, ces différents niveaux d'organisation ont permis d'obtenir par électroformation des vésicules unilamellaires géantes de taille contrôlée. L'ensemble de ces travaux ouvre de nouvelles voies à la réalisation de surfaces et de motifs micrométriques d'intérêt biologique.
Corona, Galvan Luis. "Prototypage rapide de pièces en acier : étude du dépôt de matière et d'énergie lors de la fusion à l'arc d'un fil par le procédé MIG-CMT". Thesis, Montpellier, 2018. http://www.theses.fr/2018MONTS062/document.
A test bench specially dedicated to additive manufacturing by a new technology based on the electric arc melting of a metallic wire has been developed. This technology uses an electric arc welding process called Cold Metal Transfer (CMT) as energy source to ensure the controlled melting of the wire and the deposition of liquid metal droplets to produce mechanical parts by superposing weld beads. The developed technology was used to make specimens from a low alloyed steel wire. The influence of the many parameters controlling the arc welding source on the mechanism of wire melting and transfer of molten metal droplets to form weld beads was studied. The melting-transfer cycles of liquid metal were analyzed in particular with special interest in the energies generated during each of the cycle phases. This knowledge has made possible to find different process settings for increasing the metal deposition rate compared to the pre-recorded standard settings in the microprocessor of the CMT welding generator. Walls consisting of the superposition of a large number of weld beads were then made, and the influence of the addition of many layers on the geometry of the deposits were discussed. Finally, a method of online control of the process, based on the principle of control charts, has been developed. A detailed study of the representative waveforms of current and voltage of the melting / transfer cycle with the CMT process has allowed to identify the most relevant characteristics for detecting, from a control chart, a deviation on the process that may lead to the appearance of geometrical defects
Gomez, Ortega Arturo. "Prototypage rapide de pièces en alliage d’aluminium : étude du dépôt de matière et d’énergie lors de la fusion à l’arc d’un fil par le procédé MIG-CMT". Thesis, Montpellier, 2018. http://www.theses.fr/2018MONTS067/document.
A new additive manufacturing process for metallic parts, based on the arc welding process known as CMT (Cold Metal Transfer), is studied with the objective of building parts with the aluminium alloy Al5Si. A workbench for additive manufacturing based on the 3D printers open-source principle, on which the CMT generator was integrated, was specially developed. The CMT process allows to control the aluminium wire melting and its deposition under the form of droplets on the building surface, forming, after solidification, beads that can be superposed for the parts construction. The process parameters influence on the material transfer and heat transfer during the metal melting and deposition on the build surface, as well as on the geometric characteristics of the deposed beads, in the case of mono-layer deposits, and in the case of multi-layer walls, is studied. Many geometric defects were observed, and their apparition conditions analysed, thanks in particular to the use of a high-speed camera. The understanding of the relations between the process parameters, the melting and heat transfer mechanisms, and the beads geometry, allowed the defects correction by identifying and modifying the process parameters responsible of their apparition. Finally, an on-line control method for the process, based on the analysis of the voltage and current signals produced by the welding generator during the deposition phenomena, making possible the early detection of defects, and then the modification of the process parameters before they are amplified, has been proposed
Yu, Zeming. "Fabrication d'un nouveau substrat bi-métallique Cu-Ni et dépôt de films de La2Zr2O7 (LZO) sur substrat métallique par procédé chimique en solution". Phd thesis, Université Joseph Fourier (Grenoble), 2008. http://tel.archives-ouvertes.fr/tel-00376983.