DAS K11™ PEEK CF10
Features
- Carbon Fiber Reinforcement
- Lightweight Metal Replacement
- High Strength & Rigidity
- High-Quality Interlayer Adhesion
- Smooth Surface Finish
- Low Warpage & Dimensional Stability
- Excellent Heat Resistance
- Broad Chemical Resistance
- Inherent Flame Resistance
Das K11™ PEEK CF10 ist ein kohlenstofffaserverstärktes PEEK-Material mit hoher Festigkeit und Steifigkeit sowie Hitzebeständigkeit. Anstelle von Metallteilen in vielen Anwendungen sind gedruckte Produkte leicht und stabil mit hochwertiger Schichthaftung und glatter Oberfläche, die weniger anfällig für Verzug sind.
Empfohlene Druckparameter
| Düsatemperatur | 400 ~ 450℃ |
| Betttemperatur | 100 ~ 120℃ |
| Bettmodifikation | NEIN |
| Aktiver Kühlventilator | AUS |
| Schichthöhe | 0.2mm |
| Wandstärke | ≥ 0.8mm |
| Druckgeschwindigkeit | 30~60mm/s |
Technisches Datenblatt (TDS)
| Materialeigenschaften | Typischer Wert | Prüfmethode |
|---|---|---|
| Schmelztemperatur (HDT)² | ~340℃ | ISO 11357 |
| Schmelzflussindex (MFR)¹ | 10~15g/10min | ISO 1133 |
| Wärmeformbeständigkeitstemperatur (HDT)² | 200℃(vor dem Glühen)/ 182℃(nach dem Glühen) | ISO 75 |
| Vicat-Erweichungstemperatur (VST)³ | / | ISO 306 |
| Dichte | 1.12g/cm³ | ISO 1183 |
| Geruch | Geruchlos | / |
| Löslichkeit | Unlöslich in Wasser | / |
Printing Parameters
Nozzle Temperature: 400–450°C
Bed Temperature: 100–120°C
Bed Modification: NO
Active Cooling Fan: OFF
Layer Height: 0.2 mm
Shell Thickness: ≥ 0.8 mm
Print Speed: 30–60 mm/s
Note: Settings are based on a 0.4mm nozzle. Hardened steel or ruby nozzles are strongly recommended due to carbon fiber abrasiveness.
Description
Carbon Fiber Reinforcement: Chopped carbon fiber integration enhances structural integrity, modulus, and dimensional stability.
Lightweight Metal Replacement: High strength-to-weight ratio allows functional substitution for aluminum and light alloys.
High Strength & Rigidity: Exceptional tensile and flexural stiffness designed for demanding mechanical load conditions.
High-Quality Interlayer Adhesion: Optimized thermal fusion ensures high Z-axis tensile retention across printed layers.
Smooth Surface Finish: Carbon fiber micro-fillers reduce visible layer lines for a refined, matte surface finish.
Low Warpage & Dimensional Stability: Low thermal expansion coefficient (CTE) prevents shrinking and warping during printing.
Excellent Heat Resistance: High heat deflection temperature (HDT up to 200°C) maintains shape under continuous thermal exposure.
Broad Chemical Resistance: Highly inert against organic solvents, automotive fluids, fuels, and harsh chemical agents.
Inherent Flame Resistance: Intrinsic UL94 V-0 flame retardancy without secondary additive migration.
Technical Datasheet
Melt Temperature: ~340°C (ISO 11357)
Melt Flow Rate (MFR): 10–15 g/10min¹ (ISO 1133)
Heat Deflection Temperature (HDT): 200°C² (ISO 75)
Vicat Softening Temperature (VST): N/A³ (ISO 306)
Density: 1.12 g/cm³ (ISO 1183)
Odor: Odorless
Solubility: Insoluble in water
Note: ¹ Test conditions: T= 380℃; m= 5kg. ² Test conditions: 0.45MPa; 120℃/h. ³ Test conditions: 10N; 120℃/h.