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- W1567654883 abstract "The performance of parts produced by Free Form Extrusion (FFE), an increasingly popular additive manufacturing technique, depends mainly on their dimensional accuracy, surface quality and mechanical performance. These attributes are strongly influenced by the evolution of the filament temperature and deformation during deposition and solidification. Consequently, the availability of adequate process modelling software would offer a powerful tool to support efficient process set-up and optimisation. This work examines the contribution to the overall heat transfer of various thermal phenomena developing during the manufacturing sequence, including convection and radiation with the environment, conduction with support and between adjacent filaments, radiation between adjacent filaments and convection with entrapped air. The magnitude of the mechanical deformation is also studied. Once this exercise is completed, it is possible to select the material properties, process variables and thermal phenomena that should be taken in for effective numerical modelling of FFE." @default.
- W1567654883 created "2016-06-24" @default.
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- W1567654883 date "2014-12-08" @default.
- W1567654883 modified "2023-10-16" @default.
- W1567654883 title "Thermal conditions affecting heat transfer in FDM/FFE: a contribution towards the numerical modelling of the process" @default.
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- W1567654883 doi "https://doi.org/10.1080/17452759.2014.984042" @default.
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