PPA-CF

€158,61 EUR

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Product Features
  • Metal-Like Strength
  • Industrial-Grade Precision
  • Stable Performance in Humid Conditions
  • Unmatched Performance Under High Temperatures
  • Compatible with a Wide Range of Printers
  • Diameter: 1.75mm +/- 0.05mm

Cautions for Use
  • 0.2 mm Nozzle Not Compatible
  • Hardened Steel Nozzle Mandatory
  • AMS & AMS lite NOT Compatible
  • Must Be Dried before Use to Achieve Optimal Print Quality

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€158,61 EUR
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The optimal nozzle for printing carbon fiber reinforced filaments!

Order Info
  • Order will be shipped out from DE warehouse in 1-3 business days once being processed.
  • Free Shipping over €55 (most EU countries)
  • Free Shipping over €119 (Norway, Cyprus, Malta, Switzerland)
  • Shipping rates vary by locations. See our Shipping Policy for details.


Bambu PPA-CF

Bambu PPA-CF, a premium fiber-reinforced nylon, delivers industrial-grade printing quality with precise 1:1 reproduction. Renowned for its exceptional mechanical properties and reliable performance in humid or high-temperature environments, Bambu PPA-CF is ideal for engineering applications, from mechanical prototypes to automotive components. Additionally, its broad printer compatibility sets a new standard for professional engineering filaments. Experience the power of Bambu PPA-CF and bring your designs to life!

ppa-cf filament ppa-cf filament

Metal-Like Strength

PPA-CF offers strength approaching metal levels, being 48% stronger and 102% stiffer than normal PA6-CF. This filament excels in mechanical properties, making it ideal for high-performance engineering applications. Perfect for repairs, it can effectively replace automotive and industrial parts with exceptional durability and reliability.

ppa-cf filament ppa-cf filament

Filament Normal PA6-CF Bambu PA6-CF Bambu PAHT-CF Bambu PPA-CF
Stiffness (Bending Modulus - XY, Dry State) 4870 MPa 5460 MPa 4230 MPa 9860 MPa
Strength (Bending Strength - XY, Dry State) 141 MPa 151 MPa 125 MPa 208 MPa

Industrial-Grade Precision

Achieve industrial-grade precision with Bambu PPA-CF. Its superior dimensional stability ensures that your high-precision prototypes match your design drawings exactly, without warping or deformation. Rely on PPA-CF for the accuracy you need in every project.

ppa-cf filament ppa-cf filament
ppa-cf filament ppa-cf filament

Stable Performance in Humid Conditions

Bambu PPA-CF supports long-term, stable use in humid environments, even underwater. With a moisture absorption rate 66% lower than normal PA6-CF, it maintains its stiffness and thermal properties over time. Whether printing propellers, customizing surfboards, or any other water-resistant application, PPA-CF delivers reliable performance.

ppa-cf filament ppa-cf filament

Unmatched Performance Under High Temperatures

Bambu PPA-CF boasts unmatched heat resistance, capable of withstanding prolonged exposure to temperatures up to 227°C without compromising its structural integrity or performance. This filament remains reliable and robust in extreme environments, making it perfect for industrial, mechanical, or automotive parts that must tolerate ultra-high temperatures.

ppa-cf filament ppa-cf filament

Filament Type PLA Basic PETG HF ABS ASA PC PA6-CF PAHT-CF PET-CF PPA-CF
Heat Deflection Temperature / ℃ (0.45 MPa) 57 ℃ 69 ℃ 87 ℃ 100 ℃ 117 ℃ 186 ℃ 194 ℃ 205 ℃ 227 ℃

Compatible with a Wide Range of Printers

Bambu PPA-CF is compatible with P1S, X1C, and X1E printers, requiring only an enclosure and a hardened steel nozzle. This filament is easier to use than you might think, printing smoothly at nozzle temperatures between 280°C and 310°C. Expand your possibilities with Bambu PPA-CF.



Parameters Comparison

Learn more different filaments comparison on Bambu Filament Guide >>

Normal PA6-CF Bambu PA6-CF Bambu PAHT-CF Bambu PPA-CF
Stiffness (Bending Modulus - XY, Dry State) 4870 MPa 5460 MPa 4230 MPa 9860 MPa
Stiffness (Bending Modulus - XY, Wet State) 1890 MPa 3560 MPa 3640 MPa 9620 MPa
Decline Rate of Stiffness 61.2% 34.8% 13.9% 2.4%
Strength (Bending Strength - XY, Dry State) 141 MPa 151 MPa 125 MPa 208 MPa
Strength (Bending Strength - XY, Wet State) 67 MPa 95 MPa 115 MPa 202 MPa
Decline Rate of Strength 52.5% 37.1% 8.0% 2.9%
Saturated Water Absorption Rate (25 °C, 55% RH) 3.80% 2.35% 0.88% 1.30%


Note: Information on Testing Samples in Both Dry and Wet Conditions. Dimension is 80 * 10 * 4 mm³, Sparse Fill Pattern is Concentric, Sparse Fill Density is 100%.

The performance of prints depends not only on the printer and printing temperature but also on the product's orientation (XY direction is significantly better than the Z direction), wall loops, sparse infill pattern, sparse infill density, size, structure, shape, and other factors.


Accessory Compatibility

Recommended Not Recommended
Build Plate Smooth PEI Plate, Textured PEI Plate Cool Plate SuperTack
Hotend Hotend with Hardened Steel 0.4mm / 0.6mm (recommended) / 0.8 mm Hotend with Stainless Steel Nozzle All Size
Glue Bambu Glue Stick Bambu Liquid Glue


Recommended Printing Settings
Drying Settings (Blast Drying Oven) 100 - 140°C, 8 - 12 h
Printing and Keeping Container's Humidity < 20% RH (Sealed, with Desiccant)
Nozzle Temperature 280 - 310 °C
Bed Temperature (with Glue) 100 - 120 °C
Printing Speed < 100 mm/s
Physical Properties
Density 1.25 g/cm³
Vicat Softening Temperature 232 °C
Heat Deflection Temperature 227 °C
Melting Temperature 258 °C
Melt Index 8.4 ± 0.7 g/10 min
Mechanical Properties
Tensile Strength 168 ± 4 MPa
Breaking Elongation Rate 3.2 ± 0.4 %
Bending Modulus 9860 ± 480 MPa
Bending Strength 208 ± 6 MPa
Impact Strength 41.7 ± 2.8 kJ/m²




Printing Tips


Drying Recommendations:

  • Drying Temperature:
  • In a blast drying oven: 100°C to 140°C for 8 to 12 hours.

    On an X1 printer's heatbed: 110°C to 120°C for 10 to 12 hours (less effective than a blast drying oven).

  • Important Note: Higher temperatures within the drying range yield better results, but do not exceed 160°C to avoid damaging the spool.
  • Additional Information: For more details, refer to Printing tips for Engineering materials on WIKI.

  • Storage Tips:

  • Storage Condition: To prevent the filament from absorbing moisture, use an airtight storage container with desiccant during printing.
  • For Further Details: Please refer to Printing tips for Engineering materials on WIKI.

  • Annealing Prints:

  • If you need to anneal the prints, please refer to the Technical Data Sheet (TDS) and the WIKI section Work After Printing Finished.

  • Interface Layer:

  • To prevent the filament from damaging the printing surface and to promote model adhesion, apply a thin coat of glue stick for best results.


  • What's in the Box

    Filament with Cardboard Spool*1 & Desiccant*1

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    Package*1