PPA-CF

€155,99 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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€155,99 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 /
Hotend Hardened Steel 0.4mm / 0.6mm (recommended) / 0.8 mm Hotend with Stainless Steel Nozzle (all size)
Hotend with Hardened Steel Nozzle (0.2 mm)
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

    图片加载失败文案 图片加载失败文案

    Package*1