INNOVATEFIL PP CF
INNOVATEFIL PP CF
Diameter: 1.75 mm
Format: Spool 650 g
Colour: Natural
Cantidad:
65.21 € 65.21 €
Colour:
Natural
Natural
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INNOVATEFIL PP CF

SM-PP-CF-PP-CF-NATURAL-175-650
65.21 € 65.21 €
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Diameter: 1.75 mm
Format: Spool 650 g
Colour: Natural
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Approximate delivery date: Friday 17 July

The INNOVATEFIL PP CF carbon fiber polypropylene 3D filament represents an advanced solution for those seeking high-performance professional 3D printing, combining extreme lightness, mechanical strength, and industrial durability. This technical material has been engineered by Smart Materials to meet the highest demands of the industrial sector, positioning itself as one of the best options for carbon fiber filaments for 3D printers.

Thanks to its composition of polypropylene reinforced with 20% carbon fiber, this filament offers a perfect balance between structural rigidity and impact resistance, making it ideal for manufacturing functional parts where weight reduction is a critical factor.

PP CF Filament: High Performance in Technical 3D Printing

The use of PP CF filament for 3D printing has established itself as a key trend within professional additive manufacturing. This material stands out for its high industrial capacity, allowing for the creation of strong, lightweight components without compromising final quality.

Its excellent performance against chemical agents and demanding conditions makes it a strategic choice for sectors such as automotive, aerospace, sports industry, and advanced engineering. This combination of properties positions it as one of the best technical filaments for FDM 3D printers.

Mechanical Properties of PP Carbon Fiber Filament

Carbon fiber polypropylene filament offers optimized mechanical properties for demanding applications. It features remarkable tensile and flexural strength, along with high impact absorption capacity, enabling the production of durable functional parts.

Its flexural modulus provides superior structural stiffness, while its behavior under mechanical stress ensures stability and reliability in industrial environments. These characteristics make PP CF filament ideal for functional prototypes and end-use parts subjected to loads.

Video 1: Presentation of PP CF filament. Source: Smart Materials

Advantages of Lightweight and Strong 3D Filament

One of the greatest benefits of this material is its low weight, making it a top priority for applications where weight optimization is essential. This attribute, combined with its strength, improves the efficiency of components in technical sectors.

The surface finish offers a professional aesthetic with a matte and textured appearance, highly valued for visible or presentation parts. This detail reinforces its status as one of the best professional 3D filaments on the market.

Applications of PP CF Filament in 3D Printing

Carbon fiber filament for 3D printing is widely used in the manufacturing of functional parts across multiple sectors. Its versatility allows for the production of automotive components, lightweight aerospace structures, sports equipment, and customized industrial solutions.

Thanks to its combination of chemical, thermal, and mechanical resistance, this material adapts perfectly to demanding environments, establishing itself as a benchmark solution for high-level projects.

Optimizing Adhesion in Polypropylene Printing

To achieve optimal results when printing with polypropylene filament, ensuring proper adhesion to the print surface is fundamental. The use of specific solutions significantly improves part stability during the process, preventing warping and ensuring high-quality finishes.

Buy PP CF 3D Filament: Advanced Technology for Professional Results

INNOVATEFIL PP CF filament is positioned as a leading choice for those looking to buy high-quality carbon fiber 3D filament. Its combination of properties makes it a strategic investment for projects requiring precision, strength, and lightness.

Choosing carbon fiber-reinforced polypropylene filament means committing to innovation in 3D printing, optimizing processes, reducing weight, and enhancing the performance of every manufactured part.

Video 2: Webinar on the properties and applications of PP CF filament. Source: Smart Materials

General information

Material PP CF
Format 650 g
Filament diameter 1.75 mm

Printing properties

Printing temperature 215 – 235 ºC
Print bed temperature 50 – 60 ºC
Cooling fan
Recommended printing speed 20-30 mm/s
Recommended nozzle diameter 0.4 mm

Mechanical properties

Charpy impact strength (ISO 179) 20.83 KJ/m²
Elongation at break (ISO 527) 24.5 %
Tensile strength (ISO 527) 18.11 MPa
Tensile modulus (ISO 527) - MPa
Flexural strength (ISO 178) 30.38 MPa
Flexural modulus (ISO 178) 1510.5 MPa
Surface hardness (ISO 7619-1) -

Thermal properties

Softening temperature (ISO 306) 68 ºC

Other

HS Code 3916.9

To achieve optimal results in 3D printing with carbon fiber reinforced PP filament, it is essential to properly adjust the parameters and ensure stability throughout the entire process. Correct configuration allows maximizing layer adhesion, mechanical strength, and surface quality of the parts.

The printing temperature should be maintained within a range of 215 °C to 235 °C, which promotes proper material fusion and improves structural cohesion. Working within this range helps optimize final strength without compromising dimensional accuracy.

The recommended printing speed is between 20 and 30 mm/s. Using moderate speeds is key for technical materials such as carbon fiber reinforced polypropylene, as it ensures uniform material deposition and prevents defects in functional parts.

Regarding the bed temperature, maintaining it between 50 °C and 60 °C significantly improves initial adhesion, reducing the risk of warping, especially in complex geometries or large parts.

The use of a closed chamber is highly recommended, as it helps maintain a stable ambient temperature during printing. This minimizes internal stresses and improves dimensional stability, especially in industrial applications.

Cooling should be set between 40% and 60%, allowing a proper balance between cooling and layer adhesion. Excessive cooling can negatively affect strength, while controlled cooling improves surface finish.

Finally, it is recommended to set the material flow between 110% and 130%, which promotes better layer bonding and higher density in the final part. This adjustment is key to obtaining parts with high mechanical strength and durability.

Applying these parameters correctly allows you to fully leverage the material properties, achieving professional, strong, and high-quality 3D prints.

Featured properties

Printing temperature
215 – 235 ºC
Filament diameter
1.75 mm

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