DAS K7™ PET CF10
Features
- Carbon Fiber Reinforcement
- High Mechanical Strength & Stiffness
- High Surface Hardness & Wear Resistance
- Low Moisture Absorption (Superior to PA-CF)
- No Buckling Deformation & Anti-Warping
- Good Interlayer Bonding
- Easy Printability for Entry-Level High Performance
- Environmentally Friendly Formulation
Das K7™ PET CF10 ist ein kohlefaserverstärktes PET-Material. Es bietet eine hohe Steifigkeit, hohe Oberflächenhärte, hohe Festigkeit und Verschleißfestigkeit. Als FDM-Hochleistungsmaterial für Einsteiger ist es extrem einfach zu drucken. Mit einer geringeren Feuchtigkeitsaufnahme als PA-CF eignet es sich für Strukturteile, die eine hohe Materialleistung erfordern.
Empfohlene Druckparameter
| Düsentemperatur | 250 ~ 290℃ |
| Betttemperatur | 90 ~ 110℃ |
| Betthaftmittel | Klebeband oder Klebstoff |
| Aktiver Kühlventilator | 0 ~ 50% |
| Schichthöhe | 0.2mm |
| Wandstärke | ≥ 0.8mm |
| Druckgeschwindigkeit | ≤ 200mm/s |
Technisches Datenblatt (TDS)
| Materialeigenschaften | Typischer Wert | Testmethode |
|---|---|---|
| Schmelzflussrate (MFR)¹ | 60~70g/10min | ISO 1133 |
| Wärmeformbeständigkeitstemperatur (HDT)² | 80℃ (vor dem Tempern) / 182℃ (nach dem Tempern) | ISO 75 |
| Vicat-Erweichungstemperatur (VST)³ | 102℃ | ISO 306 |
| Dichte | 1.32~1.34g/cm³ | ISO 1183 |
| Geruch | Geruchlos | / |
| Löslichkeit | Wasserunlöslich | / |
Printing Parameters
Nozzle Temperature: 250–290°C
Bed Temperature: 90–110°C
Bed Modification: PEI frosted board
Active Cooling Fan: 0–50%
Layer Height: 0.2 mm
Shell Thickness: ≥ 0.8 mm
Print Speed: ≤ 300 mm/s
Note: Settings are based on a 0.4mm nozzle. A hardened steel or ruby nozzle is recommended due to carbon fiber abrasiveness.
Description
Carbon Fiber Reinforcement: Chopped carbon fibers are embedded into the polymer matrix, dramatically enhancing tensile performance, dimensional accuracy, and structural integrity.
High Mechanical Strength & Stiffness: Delivers exceptional modulus and load-bearing performance, making printed parts ideal for demanding functional prototypes and end-use structural components.
High Surface Hardness & Wear Resistance: Features a rugged surface finish that resists scuffs, scratches, and mechanical wear under repeated friction.
Low Moisture Absorption (Superior to PA-CF): Significantly less hygroscopic than traditional polyamide (nylon) composite materials, eliminating the need for constant pre-print drying cycles and preventing steam bubbling during extrusion.
No Buckling Deformation & Anti-Warping: Carbon fiber alignment neutralizes internal thermal stress during cooling, preventing bed detachment, edge curling, or part deformation.
Good Interlayer Bonding: Specially modified resin base optimizes Z-axis cohesion to ensure high structural reliability along all stress axes.
Easy Printability for Entry-Level High Performance: Bridges the gap between basic desktop materials and advanced engineering plastics, providing accessible, hassle-free processing on standard desktop printers.
Environmentally Friendly Formulation: Uses sustainable base polymers combined with non-hazardous additives for low-odor, safer printing environments.
Technical Datasheet
Melt Flow Rate (MFR): 60–70 g/10min¹ (ISO 1133)
Heat Deflection Temperature (HDT): 78°C (unannealed) / 190°C (annealed)² (ISO 75)
Vicat Softening Temperature (VST): 85°C (unannealed) / 228°C (annealed)³ (ISO 306)
Density: 1.32–1.34 g/cm³ (ISO 1183)
Odor: Odorless
Solubility: Insoluble in water
Note: ¹ Test conditions: T= 270℃; m= 1.2kg. ² Test conditions: 0.45MPa; 120℃/h. ³ Test conditions: 10N; 120℃/h.