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- Product Details19280210-- Stocks: Immediate Availability **Regular shipments throughout Europe
Data sheet
- Product type
- Filament for 3D printers
- Filament diameter
- 1.75mm
- Material
- PA-CF
- Color
- Black
- Technology
- FDM
- Net Weight
- 50g
- Peculiarities
- Heat-resistant, Carbon loaded
- Description
PAHT Carbon Fibre filament from AzureFilm is a carbon fiber reinforced PAHT filament (PAHT-CF). it is therefore a high-temperature PA6 polyamide (Nylon) filament. This high-performance material is ideal for industrial 3D printing as it withstands up to 160°C and can be used to print long-lasting finished parts.
PAHT-CF from Azurefilm can also be printed in unheated chambers, but we recommend using it in enclosed printers for better performance.
The material is tough, has excellent abrasion and fatigue resistance, good chemical resistance, high strength and stiffness. In addition to excellent tensile strength and impact resistance, the material compound allows short continuous use up to 160°C for a maximum service life of 200h.
PAHT-CF from Azurefilm can be printed with media in printers equipped with dual extruders. Soluble media such as PVA, BVOH, PVOH can be used. It is also compatible with HIPS substrates.
Water absorption takes about four times longer to reach the saturation point than unmodified PA6, and the saturation point is five times lower than conventional PA6 materials.What are the main aspects of PAHT Carbon Fibre 3D printing filament Azurefilm?
The PAHT Carbon Fibre filament from Azurefilm is characterized by several aspects:
- PAHT-CF printed models have an extremely smooth surface, so functional prototypes and finished parts can be printed
- Due to outstanding mechanical properties, it can be used for various devices, tools, various manufacturing processes or personal use
- It has good chemical resistance
- The typical light weight of carbon is an advantage to achieve weight reduction without losing performance
- Compared with PLA, ABS, PETG or other carbon-reinforced materials, it can withstand significantly higher temperatures (up to 160°C for up to 200h)
- The high stiffness of PAHT-CF's carbon fibers allows 3D printed parts to maintain their shape under high stress. It therefore makes them tensile and impact resistant
Requirements for printing PAHT-CF filaments. Azurefilm- The thickness of the carbon fibers inside the filament is between 0.4mm and 0.6mm, so the nozzle diameter must be 0.6mm
- Heated print bed to keep the 3D model adhered to the plane
- Hardened nozzle: fiber-reinforced filament is abrasive, so a standard brass nozzle will wear out in a short period of time.
- Filament dryer: it is recommended to keep the filament in dry box at a controlled and constant temperature to store it in a dry place. This allows for better results in printed objects.
- Closed printing chamber: it is recommended to use a printer with a closed chamber to ensure a controlled environment.
Package contains: 1 x Sample PAHT Carbon Fibre filament 1.75mm / 50g / 17m for 3D printing Azurefilm
- Read more
Recommended print settings
We recommend the following print settings for printing the PAHT Carbon Fibre 3D printing filament from Azurefilm:
- Nozzle temperature: 270-290°C
- Heated print bed: 90-120°C recommended
- Printing speed: 40-60 mm/s
- Layer height: 0.2mm
- Printing plate: blue tape, Kapton tape, glass bed + Dimafix spray
Note: The settings displayed above serve as a guide to find the optimal print settings. These ranges in the settings should work for most printers, but feel free to experiment outside these parameters if you feel it is suitable for your printer. There are so many different types of printers, hot-end and offset printers that it is extremely difficult to provide a general setting that suits everyone.
Other technical data
Manufacturer's stated diameter tolerance: ± 0.02 mm
Manufactured in EUFor other information please contact us.
The item you receive may differ in some features from the one shown in the photo, depending on the production batch. Despite this, the functionality is maintained. - Attachments
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