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- W2997985286 abstract "Additive manufacturing with continuous fiber reinforcement through the Fused Filament Fabrication process is an emerging composite manufacturing technology that can be used to manufacture functional parts. Parts are made through a continuous addition of reshaped, re-melted feedstock. In the case of continuous fiber additive processes, the continuous fiber is a solid connection between the nozzle and the part. This means that process variations may exert a force between the part and the deposition head. Excessive forces can result in a part defect, such as fiber pullout. In this paper, a prototype of a solution for monitoring the printing process during continuous fiber fused filament fabrication is presented. If the forces are excessive, fiber pullout or shearing may occur, leading a failed print or part defects. To monitor this, a force-torque sensor was implemented on the head of a 3-axis continuous fiber additive manufacturing platform. By recording and timing the measured force and torque data from the sensor onto the numerical code of the printed part, a force and torque intensity map can be generated on the geometry. This projection is adjusted for the nominal, expected, shear forces on the nozzle during the printing process. Any anomalies or out-ofbound conditions can be used both in real-time and off-line to quantify process health,consistency and reliability. The functionality of mapping nozzle forces and torques on a part is demonstrated for several test cases in this manuscript." @default.
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- W2997985286 date "2020-01-05" @default.
- W2997985286 modified "2023-10-01" @default.
- W2997985286 title "In-Process Monitoring of Continuous Fiber Additive Manufacturing through Force/Torque Sensing on the Nozzle" @default.
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- W2997985286 doi "https://doi.org/10.2514/6.2020-1632" @default.
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