Modelling the Process of Fused Deposition Modelling and the Effect of Temperature on the Mechanical, Roughness, and Porosity Properties of Resulting Composite Products

Advances in the additive manufacturing (AM) processes have opened up the possibilities of widely using them in various structural sectors. Since 1980s this technology has been in permanent mutations. The ramification of the AM technology makes it difficult to obtain a clear impression of its potenti...

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Veröffentlicht in:Mechanics of composite materials 2021-01, Vol.56 (6), p.805-816
Hauptverfasser: Abouzaid, K., Bassir, D., Guessasma, S., Yue, H.
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container_issue 6
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container_title Mechanics of composite materials
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creator Abouzaid, K.
Bassir, D.
Guessasma, S.
Yue, H.
description Advances in the additive manufacturing (AM) processes have opened up the possibilities of widely using them in various structural sectors. Since 1980s this technology has been in permanent mutations. The ramification of the AM technology makes it difficult to obtain a clear impression of its potentialities. Predicting and controlling the mechanical characteristics of printed products is crucial for their final practical use. This study mainly aims to characterize the impact of printing parameters on the characteristics of printed articles and to evaluate their significance.
doi_str_mv 10.1007/s11029-021-09925-6
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subjects Biomechanics
Ceramics
Characterization and Evaluation of Materials
Chemical Sciences
Chemistry and Materials Science
Classical Mechanics
Composite materials
Composites
Fused deposition modeling
Glass
Materials and structures in mechanics
Materials Science
Mechanical properties
Mechanics
Mutation
Natural Materials
Physics
Polymers
Porosity
Predictive control
Solid Mechanics
Temperature effects
title Modelling the Process of Fused Deposition Modelling and the Effect of Temperature on the Mechanical, Roughness, and Porosity Properties of Resulting Composite Products
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