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PC V0 Nanovia

NANOVIA-PC-V0-BLACK-175-500
27.27 € 27.27 €
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In stock 0 units available for immediate shipping.
units available for shipping in 11 - 16 days
Available for shipment within 11 - 16 days

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Approximate delivery date: Wednesday 7 January - Wednesday 14 January

The Nanovia PC V0 filament stands out as one of the most advanced flame-retardant polycarbonates for high-performance FFF 3D printing, designed for parts exposed to extreme temperatures, mechanical stress and strict fire-safety requirements. Its UL94 V0 certification confirms that it is a self-extinguishing material with no flame propagation, ranking it among the safest technical polymers used in engineering, electronics and industrial manufacturing.

Nanovia PC V0 Polycarbonate: maximum impact resistance and high-temperature durability

This flame-retardant polycarbonate from Nanovia stands out for its high thermal resistance up to 140 ºC, maintaining dimensional stability and mechanical properties even under pressure, prolonged friction or repetitive movement. Nanovia PC V0 maintains performance under heavy impact, repeated collisions and continuous use, making it a professional polymer ideal for functional parts exposed to technical wear and industrial demands.

Video 1: Fire resistance test of 3D-printed parts by Nanovia, comparing different 0.8 mm specimens according to UL94 standards. Source: Nanovia

Technical material for electronics, industrial moulds and advanced manufacturing

Thanks to its flame-retardant certification, mechanical rigidity and native transparency, Nanovia PC V0 becomes a strategic material for the production of parts in sectors such as advanced electronics, robotics, electrical devices, automotive applications, moulds for composite infusion, prepregs or AFP processes, where fire safety and impact resistance are mandatory. Its professional behaviour enables the design of components subjected to pressure, heat and strict fire-protection regulations.

Technical performance of Nanovia PC V0 UL94 V0 filament

This technical polycarbonate provides key advantages in demanding industrial environments. Its UL94 V0 fire resistance, combined with extreme cold tolerance down to -100 ºC, enables the production of parts exposed to severe climatic conditions, high friction or electrical hazards. Nanovia PC V0 thus integrates as a reliable engineering filament for functional production, industrial prototyping, mechanical parts and safety-critical electrical components.

Conclusion: Nanovia PC V0, the ultimate flame-retardant polycarbonate for advanced 3D printing

Nanovia PC V0 UL94 V0 is consolidated as one of the most powerful polycarbonate filaments in the professional market, created for those seeking fire protection, extreme thermal stability and industrial-grade mechanical strength. Its technical performance makes it the definitive choice for demanding functional parts, electrical applications and manufacturing processes where durability and flame resistance are not optional but required. This filament is the ideal solution for professional 3D printing that requires flawless, durable and certified results.

General information

Material PC
Filament diameter 1.75 / 2.85 mm
Filament length ø 1.75 - 500 g = 173.2 m | ø 2.85 - 500 g = 65.3 m | ø 1.75 - 2000 g = 693 m | ø 2.85 - 2000 g = 261.3 m
Certificates RoHS | UL 94

Mechanical properties

Elongation at break (ISO 527-2/1A) 4.1 %
Tensile modulus (ISO 527-2/1A) 2165 MPa
Flexural modulus (ASTM D790) 2160 MPa

Printing properties

Printing temperature 270-290 ºC
Print bed temperature 100-140
Recommended printing speed 50-70 mm/s

Electrical properties

Dielectric constant (ASTM D150) 2.80

Thermal properties

Softening temperature (D648 @ 18.6 kg/cm2) 133 ºC

Specific properties

Flammability classification (V-0 at 3.0 mm) UL 94

To obtain technical parts with high thermal resistance and UL94 V0 flame retardant certification using the PC V0 filament, it is essential to work with proper configuration and control the material’s humidity. The filament must be stored in an airtight container with a desiccant, avoiding direct sunlight, and when exposed to humidity it is recommended to dry it for about six hours at 100 °C before printing. This preparation improves the polycarbonate’s flow and prevents bubbles or loss of properties during extrusion.

During printing, it is recommended to work with an extrusion temperature between 270 °C and 290 °C to ensure proper material fusion. The heated bed must remain between 100 °C and 140 °C to promote adhesion and reduce shrinkage. For optimal results, it is advisable to use printers with a closed chamber heated above 100 °C, which reduces warping to a controlled range of approximately 0.5% to 0.7%, preserving dimensional stability in the flame-retardant polycarbonate.

Regarding speed, working between 50 and 70 mm/s offers a precise balance between quality and mechanical resistance, especially in parts subjected to friction or impacts. To avoid deformation or internal stress, it is recommended to maintain minimal or no cooling, as polycarbonate requires continuous fusion without abrupt cooling. Once printing is complete, for outdoor applications it is recommended to paint the part or apply a UV protective coating, preventing material hydrolysis and yellowing over time, ensuring aesthetic and functional stability in demanding environments.

Featured properties

Printing temperature
270-290 ºC
Filament diameter
1.75 / 2.85 mm

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