Fibre orientation critically affects properties in material extrusion additive manufacturing. This study developed new understanding of 3D short-fibre orientation in representative structures intended to capture most features of typical tool-paths. The parametric representative structures included straight paths, curved paths, corners, a range of intersection types, and the start/end of paths. Fibre orientation tensors were used to quantify 3D fibre alignment along the direction of printed filaments (F-alignment), lateral to the in-plane filament direction (F-lat alignment), and normal to the print-platform (Z-alignment). Overall, fibres were highly aligned along the filament direction in both straight paths and curved paths but less aligne...
This study demonstrates that the interface between layers in 3D-printed polylactide has strength of ...
Large-Scale Additive Manufacturing (LSAM) polymer deposition employs a single screw extruder to mel...
Properties of a polymer can be engineered by the addition of chopped fibers, additives, and fillers....
© the authors, CC-BY 4.0 Supplementary files for article 3D short fibre orientation for universal st...
This study develops new understanding of fibre orientation distribution in material extrusion additi...
Additive manufacturing by material extrusion such as the widespread fused filament fabrication is ab...
Short fiber-reinforcement has been used to improve the structural performance of extrusion based 3D ...
Despite the growing interest in 3D concrete printing, its current progress is limited by reinforcing...
Despite the growing interest in 3D concrete printing, the inset of tensile reinforcement poses sever...
Fused filament fabrication (FFF) is a state-of-the-art process for manufacturing polymer-based compo...
The fibre utilization efficiency of directionally distributed fibre-reinforced concrete is better th...
Extrusion Deposition Additive Manufacturing (EDAM) is a process in which fiber-filled thermoplastic ...
Purpose: This study/paper aims to develop fundamental understanding of mechanical properties for mul...
Fused Filament Fabrication (FFF) is a rapidly improving 3D printing technology that can be used for ...
ctures in the scale of multiple meters owing to enhanced stiffness and lower coefficient of thermal ...
This study demonstrates that the interface between layers in 3D-printed polylactide has strength of ...
Large-Scale Additive Manufacturing (LSAM) polymer deposition employs a single screw extruder to mel...
Properties of a polymer can be engineered by the addition of chopped fibers, additives, and fillers....
© the authors, CC-BY 4.0 Supplementary files for article 3D short fibre orientation for universal st...
This study develops new understanding of fibre orientation distribution in material extrusion additi...
Additive manufacturing by material extrusion such as the widespread fused filament fabrication is ab...
Short fiber-reinforcement has been used to improve the structural performance of extrusion based 3D ...
Despite the growing interest in 3D concrete printing, its current progress is limited by reinforcing...
Despite the growing interest in 3D concrete printing, the inset of tensile reinforcement poses sever...
Fused filament fabrication (FFF) is a state-of-the-art process for manufacturing polymer-based compo...
The fibre utilization efficiency of directionally distributed fibre-reinforced concrete is better th...
Extrusion Deposition Additive Manufacturing (EDAM) is a process in which fiber-filled thermoplastic ...
Purpose: This study/paper aims to develop fundamental understanding of mechanical properties for mul...
Fused Filament Fabrication (FFF) is a rapidly improving 3D printing technology that can be used for ...
ctures in the scale of multiple meters owing to enhanced stiffness and lower coefficient of thermal ...
This study demonstrates that the interface between layers in 3D-printed polylactide has strength of ...
Large-Scale Additive Manufacturing (LSAM) polymer deposition employs a single screw extruder to mel...
Properties of a polymer can be engineered by the addition of chopped fibers, additives, and fillers....