In this experiment, we create and evaluate graphite-based 3D printing composite filament in hopesof determining its effectiveness as a conductive or semiconductive 3D printing material. With 3D printable materials becoming more relevant in materialsconstruction, the development of a 3D printable transistor would be an invaluable invention. Our results are from experiments we ran in our 3D printing lab with custom-made filaments using graphite powder in addition to the standard (non-conductive) PLA. These results show that is indeed possible to create graphite infused filament with conductive properties. Carbon is also a potential substitute for a semiconductor when in its single-layered graphene form. However, the attributes of the filament...
International audienceFor the purpose of fabricating electrically conductive composites via the fuse...
Adding micro or nano-carbon reinforcements to polymers enhances their mechanical and electrical pro...
In this paper, a local enrichment strategy was adopted to prepare carbon nanotube (CNT) enriched pol...
The rise of 3D printing technology, with fused deposition modeling as one of the simplest and most w...
Initially used as a prototyping tool for designers, additive manufacturing, also popularly known as ...
3D printing technology can produce complex objects directly from computer aided digital designs. The...
3D printing technology is a process of synthesizing an object by slicing a three-dimensional object ...
Fused deposition modeling (FDM) is limited by the availability of application specific functional ma...
PLA nanocomposites for fused-deposition modeling (FDM) technique are considered. Thermal and electri...
PLA nanocomposites for fused-deposition modeling (FDM) technique are considered. Thermal and electri...
3D printing technology can produce complex objects directly from computer aided digital designs. The...
The advent of 3D printing has had a disruptive impact in manufacturing and can potentially revolutio...
3D printing has revolutionized a number of industries, but complete extension to electronics, roboti...
Electrically conductive inks are the foundations of printed electronics as they allow to print circu...
International audienceFor the purpose of fabricating electrically conductive composites via the fuse...
Adding micro or nano-carbon reinforcements to polymers enhances their mechanical and electrical pro...
In this paper, a local enrichment strategy was adopted to prepare carbon nanotube (CNT) enriched pol...
The rise of 3D printing technology, with fused deposition modeling as one of the simplest and most w...
Initially used as a prototyping tool for designers, additive manufacturing, also popularly known as ...
3D printing technology can produce complex objects directly from computer aided digital designs. The...
3D printing technology is a process of synthesizing an object by slicing a three-dimensional object ...
Fused deposition modeling (FDM) is limited by the availability of application specific functional ma...
PLA nanocomposites for fused-deposition modeling (FDM) technique are considered. Thermal and electri...
PLA nanocomposites for fused-deposition modeling (FDM) technique are considered. Thermal and electri...
3D printing technology can produce complex objects directly from computer aided digital designs. The...
The advent of 3D printing has had a disruptive impact in manufacturing and can potentially revolutio...
3D printing has revolutionized a number of industries, but complete extension to electronics, roboti...
Electrically conductive inks are the foundations of printed electronics as they allow to print circu...
International audienceFor the purpose of fabricating electrically conductive composites via the fuse...
Adding micro or nano-carbon reinforcements to polymers enhances their mechanical and electrical pro...
In this paper, a local enrichment strategy was adopted to prepare carbon nanotube (CNT) enriched pol...