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PA-CFJet (Nylon + Carbon Fibers) | Filament-PM

PA-CFJet 3D printing filament is a highly heat-resistant engineering thermoplastic made from PA12 and 17% carbon fibers. This combination results in a material that is harder and tougher than standard PA12, while still maintaining its impact resistance.

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Variant is not defined.
115°C
235°C
Do not cool
40 - 60 mm/s

Technical informations

Thermal properties
HDT-B165 °C
Vicat softening temperature170 °C
Filament properties
Country of origin Czechia
Filament density1.01 g/mm3
Diameter tolerance0.03 mm
Recommended support materialHelios Support (support for ABS, ASA)
Recommended bed surfaceLockPAd - Special Build Plate for Nylons
Recommended adhesiveMagigoo Pro PA - Adhesive for Polyamide (nylon)
Spool weight and dimensions

How to store filaments

Humidity and UV light can decrease the filament quality and weaken its mechanical properties. We strongly recommend storing open filaments in a dry and dark place. You can find a complete guide on how to properly store your filament here

Where to throw print fails and supports?

We kindly ask our customers to cope with plastic waste responsibly. Failed prints, support material, rafts, or brims should be liquidated according to the local guidelines. Paradoxically, in most cases, it is better to throw this waste in the regular trash can, as most of the material waste created in 3D printing is not identified, which causes more problems than benefits in the waste sorting facilities.

PA-CFJet (Nylon + Carbon Fibers) | Filament-PM

PA-CFJet 3D printing filament is a highly heat-resistant engineering thermoplastic made from PA12 and 17% carbon fibers. This combination results in a material that is harder and tougher than standard PA12, while still maintaining its impact resistance.

It is suitable for a wide range of applications, including prototyping, 3D printer parts, construction parts, and mechanically and thermally stressed parts. With similar printing properties to ABS, PA-CFJet is easy to work with and produces parts with a rougher matte graphite surface. Its high heat resistance (up to 160°C) and resistance to impact, chemicals, and mechanical stress make it a versatile and reliable choice for demanding applications.

General information about CF/GF :

Thermoplastics are plastics that can change their state without a change in chemical properties. They're popular 3D printing materials since they're simple to melt, extrude layer by layer, and cool into a shape. However, the features that make them suitable for 3D printing make them poor candidates for engineering-strength applications: many of these thermoplastics have a low melting point and aren't particularly strong or stiff. This is where composite materials come to help.

Composite filaments are filaments made from regular material (like PLA, ABS, PETG, Nylon, etc..) manufactured and co-extruded with additional 5-10 micrometers wide fibers like carbon fibers (CF), glass fibers (GF), or sometimes even kevlar. Composite materials usually benefit from enhanced strength, stiffness, heat resistance, and durability. This strength advantage over more standard thermoplastics used in 3D printing, such as ABS or PLA, allows 3D printing applications to expand alongside these new materials and their attributes. The ratio of fiber to filaments usually ranges from 10% to 30%.

An often less visible property that greatly impacts the final strength of the filament is the fiber length and type of extrusion used during the filament production process. Some manufacturers use only milled fibers, extruded in a random way, others use extrusion methods where fibers are aligned following the axis of the material, which provides better mechanical properties to the filament.

Carbon fibers

Carbon Fiber is a stiff and sturdy fiber that behaves similarly to 6061 aluminum, making it ideal for lightweight components that can bear heavy loads.

Glass fibers

Fiberglass is a sturdy, versatile, and low-cost reinforcing material. It increases part strength beyond that of plastics and is an excellent starting point for printing with reinforcement.

Kevlar fibers

Kevlar has high toughness and shock resistance, making it ideal for high-impact shock-loading conditions. It bends instead of breaking.

Pros & cons of composite filaments

+ Increased strength and stiffness

+ Very good dimensional stability, less prone to warping

+ Lightweight

+ Increased heat resistance

+ Beautiful matt surface finish of printed parts

 - Most composite filaments are abrasive and require at least a hardened steel nozzle for printing

- Increased oozing when printing & higher tendency to clog

Browse all carbon and glass fibre filaments (CF/GF) in stock in our warehouse in Senec, Slovakia. For comparison, see also Nylon and PETG.

Filament-PM

Filament-PM is a Czech filament manufacturer with a wide and still growing range of materials, from everyday PLA and PETG to flame-retardant, ESD and fibre-reinforced engineering grades. It suits beginners and professionals alike. JustCreate3D keeps a large selection of Filament-PM in stock in its warehouse in Senec, Slovakia, and dispatches orders quickly.

Filament-PM was among the first producers of 3D printer filament, starting back in 2013. It is an official partner of PRUSA Manufacturing: the printed parts of the Prusa MK2 and MK3 printers were made from Filament-PM PETG. Today eight production lines run day and night. The company also watches its ecological footprint – its factory runs on renewable energy and it produces recycled filament from its own plastic waste.

Filament-PM at JustCreate3D

Who is Filament-PM for?

Beginners will appreciate the reliable PLA and PETG; makers looking for something special can try the metal, marble or wood finishes. Engineers get a wide choice of flame-retardant (V0), ESD and carbon or glass-fibre reinforced materials from a single manufacturer.

Frequently asked questions

Is Filament-PM PETG suitable for Prusa printers?

Yes. Filament-PM is an official partner of PRUSA Manufacturing, and the printed parts of the Prusa MK2 and MK3 printers were made from its PETG.

What is the difference between PLA and PLA+?

PLA+ is Filament-PM’s modified version of PLA. How it differs from standard PLA is described in detail in each product description.

Does Filament-PM make recycled filament?

Yes. RePLA+ and RePETG are made from the manufacturer’s own plastic production waste, so they are a simple way to print more sustainably.

Browse all Filament-PM filaments or compare them with other PETG filaments.

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