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This master thesis consists of developing an automated powder transfer system for industrial additive manufacturing printers. Current systems only allow a limited amount of powder to be loaded into additive manufacturing printers. Therefore, it is necessary to interrupt the additive manufacturing process so that an operator can reload the powder in the printers. This interruption is counterproductive and can also impact the quality of the printed part as it disturbs its thermal balance. A system will therefore be developed to load the powder in an automated manner.
3D printers --- Sizing --- Additive manufacturing --- Powder transfer --- Transfer system --- Aerosint --- Automated transfer --- Sizing pneumatic system --- Pneumatic conveying --- Dilute phase --- Dense phase --- Feeding --- Cyclone --- Settling chamber --- Filtration --- Blower --- Saltation velocity --- Solid loading ratio --- Stairmand geometry --- Tri-clamp --- Flow simulation --- Particles simulation --- Grafcet --- Bosch structure --- Pipeline pressure drop --- Filtration pressure drop --- pressure drop --- Prusa --- Mechanical --- Engineering --- Solidworks --- Ingénierie, informatique & technologie > Ingénierie mécanique
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