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FibreX PPA+GF15

3DXTECH-PPA-GF15-K-175-750
140.00 € 140.00 €
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10 10% 10% 126.00 € 126.00 €
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units available for shipping in 10 - 15 days
Available for shipment within 10 - 15 days

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Approximate delivery date: Monday 7 July - Monday 14 July

FibreX™ PPA+GF15 by 3DXTECH is a technical filament for FDM 3D printing designed for industrial environments where materials with high mechanical, thermal, and chemical performance are required. This filament is composed of polyphthalamide (PPA) reinforced with 15% glass fiber, providing exceptional rigidity and superior dimensional stability. As a type of high-temperature nylon, FibreX™ PPA+GF15 significantly outperforms traditional aliphatic nylons like PA6, PA66, PA11, and PA12, as well as advanced materials such as PEI ULTEM, by offering a greater range of thermal resistance and structural durability.

This engineering filament boasts a glass transition temperature (Tg) of 125 °C, a heat deflection temperature (HDT) of 260 °C, and a melting point (Tm) of 305 °C. These characteristics make FibreX™ PPA+GF15 the ideal filament for parts subjected to continuous thermal stress or demanding environments such as those present in the automotive, aerospace, electrical, or chemical sectors. Furthermore, thanks to its low moisture absorption, it maintains its mechanical properties even in conditions of high relative humidity, minimizing deformation and degradation of the printed part. Its excellent chemical resistance allows for its prolonged use against alcohols, acids, fuels, oils, hydraulic fluids, coolants, and metal chlorides.

Manufactured in the United States under industrial quality standards, FibreX™ PPA+GF15 is available in 750g spools, with a diameter of 1.75 mm and in black color. Its production takes place at 3DXTECH's 6,300 m² facility located in Grand Rapids, Michigan, using state-of-the-art equipment that ensures uniformity, dimensional accuracy, and consistent performance. This high-level technical filament solidifies itself as an effective solution for professional additive manufacturing, especially in functional engineering applications and short production runs.

Video: 3DXTECH filaments are produced in the United States under strict quality standards.

In conclusion, FibreX™ PPA+GF15 is positioned as one of the most advanced filaments on the market for high-performance FDM 3D printing, especially suitable for applications requiring technical materials with extreme thermal resistance, high structural rigidity, and excellent behavior against aggressive chemical agents. Its glass fiber-reinforced formulation and polyphthalamide base make it the ideal choice for professionals in engineering, automotive, the aerospace industry, and the manufacture of functional components in harsh environments. Thanks to its reliability, dimensional stability, and compatibility with industrial 3D printers, this technical filament allows additive manufacturing to be taken to a new level of precision and resistance, consolidating itself as a professional solution for demanding manufacturing challenges.

Part printed with PPA+GF15 glass fiber reinforced filament

Photo: Part printed with PPA+GF15 glass fiber reinforced filament. Source: 3DXTECH

General information

Material PA CF
Format Spool

Printing properties

Printing temperature 365 °C-390 °C ºC
Print bed temperature 140 °C-160 °C

For the best results with glass fiber reinforced PPA+GF15 filament, it's recommended to use an industrial-grade FDM 3D printer equipped with a high-performance extruder and heated chamber. The extruder temperature should be set between 365 °C and 390 °C, while the print bed should be maintained between 140 °C and 160 °C.

It is essential to use a wear-resistant nozzle, at least 0.4 mm in diameter, due to the abrasive nature of the glass fiber content. To ensure excellent layer adhesion and minimize warping, a closed environment with a heated chamber up to 140 °C is advisable.

Additionally, the filament must be dried before use at 120 °C for 4 hours to remove moisture absorbed during storage. These recommendations ensure precise printing, dimensionally stable parts, and a professional finish in complex technical applications.

Featured properties

Printing temperature
365 °C-390 °C ºC

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