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Bambu Lab PPS CF Filament 1.75mm 750G - High-Temperature Carbon Fiber 3D Printer Filament for Strong, Durable Prints | Perfect for Aerospace, Automotive & Engineering Prototypes
Bambu Lab PPS CF Filament 1.75mm 750G - High-Temperature Carbon Fiber 3D Printer Filament for Strong, Durable Prints | Perfect for Aerospace, Automotive & Engineering Prototypes

Bambu Lab PPS CF Filament 1.75mm 750G - High-Temperature Carbon Fiber 3D Printer Filament for Strong, Durable Prints | Perfect for Aerospace, Automotive & Engineering Prototypes

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Description

Bambu PPS-CF

PPS-CF is a composite material made from carbon fiber-reinforced polyphenylene sulfide. The combination of PPS resin and carbon fiber gives PPS-CF exceptional properties, including excellent resistance to solvents, corrosion, heat, and flames. Additionally, it offers superior strength, stiffness, and dimensional stability, making it a specialized engineering plastic that meets the demands of unique and challenging applications.

 

Ultra-High Heat Resistance

PPS-CF boasts a heat deflection temperature of up to 264°C under 0.45 MPa and can continuously operate at temperatures exceeding 200°C. This significantly outperforms normal PA-CF materials, which have maximum temperatures around 190°C and 120°C. Its exceptional heat resistance ensures outstanding creep resistance, making PPS-CF ideal for demanding industrial environments and applications.

 

Superior Flame Retardancy

PPS-CF achieves a UL-94 V-0 flame retardant rating, offering superior safety and reliability in critical areas such as electronics and automotive components. PPS-CF provides long-lasting durability and peace of mind even in the most demanding environments.

Unmatched Mechanical Properties

Combining the stiffness of PPS polymers with the reinforcing power of carbon fiber, PPS-CF offers exceptional stiffness, bending strength, and tensile strength. Its superior dimensional stability and resistance to warping ensure that large-scale prints maintain precision and avoid deformation during the printing process, making it perfect for high-precision applications.

Solvent and Chemical Resistance

PPS-CF offers outstanding solvent and chemical resistance, second only to PTFE (Teflon). It remains virtually insoluble in any solvent below 200°C and exhibits exceptional resistance to acids, bases, and salts under normal conditions. This makes PPS-CF the ideal choice for challenging environments where chemical stability is critical.

Ultra-Low Water Absorption

With an extremely low moisture absorption rate of just 0.05%, PPS-CF ensures that its mechanical and thermal properties remain stable even in humid conditions. Unlike normal PA-CF, which can soften and degrade when exposed to moisture, PPS-CF maintains its strength and durability, making it the superior option for applications requiring high moisture resistance.

 

Accessory Compatibility

RecommendedNot Recommended
Build PlateSmooth PEI Plate / Textured PEI PlateCool Plate
HotendHardened Steel 0.4mm / 0.6mm (recommended) / 0.8 mmHotend with Stainless Steel Nozzle (all size)
Hotend with Hardened Steel Nozzle (0.2 mm)
GlueBambu Glue StickBambu Liquid Glue
AMS & AMS lite/AMS & AMS lite


Recommended Printing Settings

Drying Settings before Printing100 - 140 °C, 8 - 12 h
Printing and Keeping Container's Humidity< 20% RH (Sealed, with Desiccant)
Nozzle Temperature310 - 340 °C
Bed Temperature (with Glue)100 - 120 °C
Printing Speed< 100 mm/s

 

Physical Properties

Density1.26 g/cm³
Vicat Softening Temperature268 °C
Heat Deflection Temperature264 °C
Melting Temperature284 °C
Melt Index11.48 ± 1.23 g/10 min

 

Mechanical Properties

Tensile Strength87 ± 5 MPa
Breaking Elongation Rate1.2 ± 0.4 %
Bending Modulus7160 ± 280 MPa
Bending Strength142 ± 5 MPa
Impact Strength27.8 ± 2.3 kJ/m²

 

Downloads

Printing Tips

Bambu PPS-CF Printing Guidelines:

  • Nozzle Temperature: Recommended range is 310 to 340°C.
  • Chamber Temperature: Recommended range is 60 to 90°C.
  • Tip: Using higher values within these ranges can enhance the mechanical properties of the printed parts, especially in the Z-direction.


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 .


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 .


Annealing Prints:

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