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Bambu Lab

Bambu Lab PPS-CF

Bambu Lab PPS-CF

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Free shipping on orders over 500,- in DK

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Ships from Roskilde DK

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Local service center in Roskilde

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1 year warranty

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Bambu Lab PPS-CF

1.75mm 750g

Product Features

  • Extremely high heat resistance

  • Premium flame retardant properties

  • Unmatched mechanical properties

  • Resistant to solvents and chemicals

  • Very low water absorption

  • Comes with cardboard spool

  • Diameter: 1.75 mm ± 0.05 mm


Usage Warnings

  • For use only with X1E/H2 Series

  • 0.2 mm nozzle not compatible

  • Stainless steel nozzle not recommended

  • AMS & AMS Lite not compatible

  • Must be dried before use for optimal print quality

 

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 extraordinary properties, including excellent resistance to solvents, corrosion, heat, and flames. In addition, the material offers superior strength, stiffness, and dimensional stability, making it a specialized engineering plastic that meets the requirements of unique and demanding applications.

Extremely high heat resistance

PPS-CF has a heat deflection temperature of up to 264°C at 0.45 MPa and can continuously operate at temperatures above 200°C. This significantly surpasses normal PA-CF materials, which have maximum temperatures around 190°C and 120°C. The excellent heat resistance also ensures outstanding creep resistance, making PPS-CF ideal for demanding industrial environments and applications.

Filament Type PLA Basic ABS PC Normal PA-CF PA6-CF PET-CF PPA-CF PPS-CF
Heat Deflection Temperature / ℃ (0.45 MPa) 57 ℃ 87 ℃ 117 ℃ 184 ℃ 186 ℃ 205 ℃ 227 ℃ 264 ℃

Excellent flame retardant properties

PPS-CF achieves a UL-94 V-0 flame retardant rating, providing superior safety and reliability in critical areas such as electronics and automotive components. PPS-CF ensures long-term durability and peace of mind, even under the most demanding conditions.


Unmatched mechanical properties

The combination of the stiffness of the PPS polymer and the reinforcing effect of carbon fiber gives PPS-CF extraordinary stiffness, flexural strength, and tensile strength. Its excellent dimensional stability and resistance to shrinkage ensure that large prints maintain precision and avoid deformation during the printing process, making the material perfect for high-precision applications.

Property PET-CF PPS-CF Improvement (%)
Stiffness (Flexural Modulus – XY, dry state) 5320 MPa 7160 MPa 34.59 %
Strength (Flexural Strength – XY, dry state) 131 MPa 142 MPa 8.40 %

 

Resistance to solvents and chemicals

PPS-CF offers excellent resistance to solvents and chemicals, surpassed only by PTFE (Teflon). The material is virtually insoluble in all solvents below 200 °C and shows exceptional resistance to acids, bases, and salts under normal conditions. This makes PPS-CF the ideal choice for demanding environments where chemical stability is crucial.

Extremely low water absorption

With a very low moisture absorption of only 0.05%, PPS-CF maintains its mechanical and thermal properties even under humid conditions. Unlike common PA-CF, which can soften and degrade with moisture, PPS-CF retains its strength and durability, making it the best choice for applications requiring high moisture resistance.

Parameter Comparison

See more filament comparisons in the Bambu Filament Guide >>

Property PPS-CF PET-CF PA6-CF
Composition Polyphenylene sulfide (PPS), carbon fiber Polyethylene terephthalate (PET), carbon fiber Nylon6 (PA6), carbon fiber
AMS & AMS Lite Compatibility Not compatible Not compatible Not compatible
Dry before printing Required Required Required
Sealed during printing Sealed with desiccant Sealed with desiccant Sealed with desiccant
Printer Type Enclosed Enclosed (recommended) / Open-frame Enclosed
Nozzle Hardened steel hotend 0.4 / 0.6 (recommended) / 0.8 mm Hardened steel hotend 0.4 / 0.6 (recommended) / 0.8 mm Hardened steel hotend 0.4 / 0.6 (recommended) / 0.8 mm
Nozzle Temperature 310 – 340 ℃ 260 – 300 ℃ 260 – 300 ℃
Bed Temperature 100 – 120 ℃ 80 – 110 ℃ 100 – 110 ℃
Toughness (Impact Strength – XY, dry state) 27.8 kJ/m² 36.0 kJ/m² 40.3 kJ/m²
Toughness (Impact Strength – XY, wet state) 27.8 kJ/m² 37.3 kJ/m² 57.2 kJ/m²
Strength (Flexural Strength – XY, dry state) 142 MPa 131 MPa 151 MPa
Strength (Flexural Strength – XY, wet state) 142 MPa 127 MPa 95 MPa
Layer Strength (Flexural Strength – Z, dry state) 36 MPa 49 MPa 80 MPa
Layer Strength (Flexural Strength – Z, wet state) 36 MPa 46 MPa 45 MPa
Stiffness (Flexural Modulus – XY, dry state) 7160 MPa 5320 MPa 5460 MPa
Stiffness (Flexural Modulus – XY, wet state) 7160 MPa 5240 MPa 3560 MPa
Layer Adhesion (Impact Strength – Z, dry state) 2.8 kJ/m² 4.5 kJ/m² 15.5 kJ/m²
Heat Resistance (HDT, 0.45 MPa, dry state) 264 ℃ 205 ℃ 186 ℃
Saturated Water Absorption (25 °C, 55% RH) 0.05 % 0.37 % 2.35 %

 

Accessory Compatibility

Recommended / Not Recommended Recommended Not Recommended
Build Plate Smooth PEI Plate, Textured PEI Plate Cool Plate SuperTack
Hotend Hardened steel hotend 0.4 mm / 0.6 mm (recommended) / 0.8 mm Stainless steel nozzle hotend (all sizes)
Glue Bambu Glue Stick Bambu Liquid Glue
AMS & AMS Lite AMS & AMS Lite

 

Recommended Print Settings

Parameter Value
Drying before printing 100 – 140 °C, 8 – 12 hours
Chamber humidity during printing < 20 % RH (sealed, with desiccant)
Nozzle temperature 310 – 340 °C
Bed temperature (with glue) 100 – 120 °C
Print speed < 100 mm/s

Physical Properties

Parameter Value
Density 1.26 g/cm³
Vicat Softening Temperature 268 °C
Heat Deflection Temperature (HDT) 264 °C
Melting Temperature 284 °C
Melt Index 11.48 ± 1.23 g/10 min

Mechanical Properties

Parameter Value
Tensile Strength 87 ± 5 MPa
Elongation at Break 1.2 ± 0.4 %
Flexural Modulus 7160 ± 280 MPa
Flexural Strength 142 ± 5 MPa
Impact Strength 27.8 ± 2.3 kJ/m²

 

Download

Filament TDS

Filament MSDS

Filament RoHS

 

Print Tips for Bambu PPS-CF

Recommended Print Settings:

  • Nozzle Temperature: 310 – 340 °C

  • Chamber Temperature: 60 – 90 °C

  • Tip: Using higher temperatures within these ranges can improve the mechanical properties of the printed parts, especially in the Z-direction.

Drying:

  • Drying in a blast drying oven: 100 – 140 °C for 8 – 12 hours

  • Drying on the X1 printer's heatbed: 110 – 120 °C for 10 – 12 hours (less effective than blast drying oven)

  • Important: Higher temperatures within the drying range yield better results, but do not exceed 160 °C to avoid damaging the spool.

  • Further Information: See “Printing tips for Engineering materials” on WIKI for more details.

Storage:

Annealing of Printed Parts:

Package Contents: