Raise3D Industrial PET CF - carbon fiber reinforced composite filament
Raise 3D Industrial PET CF is a carbon fiber reinforced compound and filament based on PET ( polyethylen terephthalate ) . With a dispersed amount of 15 wt . % carbon fibers which improve the stiffness , strength , heat and chemical resistance of the PET matrix , PET CF can achieve a heat resistance of around 150 ºC after tempering and a tensile modulus and strength of over 6 GP respectively . 80 MPa can be achieved . Compared to carbon fiber reinforced nylon filament , Raise 3D Industrial PET CF is characterized by high compressive strength , dimensional stability , creep strength and low moisture absorption , making it the ideal choice for printing carbon fiber composites and materials for strong and cost - effective end applications such as devices and functional parts .
Highlights:
- HDT up to 150℃
- Strong and high rigidity
- High dimensional stability
- Low moisture absorption
- Creepability and chemical resistance
Compatibility: PET support (carrier material)
Applications:
Automotive industryAerospace
End-user part
Fixtures and brackets
Tools for production
Electrical and electronics industry (E&E)
Print settings:
Nozzle temperature(℃):
280-300
Printing speed(mm/s):
35-90
Build platform temperature(℃):
80-100
Cooling fan(%):
On
Layer height (mm):
0.1-0.25
Drying temperature(℃):
100-120
User tip:
1. Dry PET CF at 70-80°C for 8-12 hours before printing, as low moisture content is crucial for the quality of the printed parts.
2. After drying, we recommend storing PET-CF filaments in the Raise3D Filament Dry Box during the printing process.
3. When printing PET-CF, brass nozzle abrasion often occurs. Using an abrasion-resistant nozzle, such as hardened steel or ruby nozzle, is highly recommended.
4. After printing, it is recommended to cure the model in an oven at 80-100 °C for 8-12 hours.
5. For a small model (side length < 50 mm), annealing at 80°C for 8 hours is recommended; for a medium-sized model (50 mm < side length < 150 mm), annealing at 80°C for 12 hours is recommended; for a large-sized model, annealing at 100°C for at least 12 hours is recommended.
6. If PET CF is also used as a carrier material, please remove the carrier structure after annealing.
Type: | Filament |
Material: | Fiber filled, PET CF |
Color: | Black |
Diameter: | 1.75mm |
Net weight: | 1000g |
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