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PSU

Nanovia

New product

2 Items

86,95 €
86,95 €

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PSU filament suitable for the manufacture of electronic applications.

PSU (polysulphone) is a high temperature resistant plastic with high rigidity and mechanical strength. The excellent thermo-mechanical performance of PSU, combined with its chemical resistance, makes it ideal for electronic applications in contact with solvents in the medical and aerospace industries.

PSU is often used for the transport of solvents, hydrocarbons, acids and bases, as it is an insulator, making it suitable for battery cases.

Among its advantages are the following:

  • Insulating
  • Solvent resistant
  • Rigid

It is recommended to print the PSU Nanovia filament in a room equipped with air extraction or using a suitable breathing apparatus.

The printing temperature of PSU filament ranges from 300 - 390 °C.

For more technical and safety information about the Nanovia PSU filament, please refer to the "Downloads" section.

General information
Manufacturer Nanovia (Francia)
Material PSU
Format 500 g spool
Density 1.24 g/cm3
Filament diameter 1.75 ó 2.85 mm
Diameter tolerance ±0,05 mm
Filament length -
Colour Translucent yellow
RAL/Pantone  -
Printing properties
Printing temperature 300 – 390 °C
Base/bed temperature 110 – 140 °C
Chamber temperature -
Layer fan -
Print speed -
Nozzle diameter All
Mechanical properties
Izod impact resistance -
Charpy impact resistance  -
Elongation at break (ASTM D638) 50 – 100 %
Tensile strength (ASTM D638) 70.3 MPa
Tensile modulus (ASTM D638) 2480 MPa
Bending strength (ASTM D790) 106 MPa
Bending modulus (ASTM D7909 2690 MPa
Surface hardness -
Thermal properties
Softening temperature (ISO 306) 140 ºC
Melting temperature -
Flammability (HB/V1) 1.5mm UL94/U4.5mm UL94
Electrical properties
Electrical resistance (ASTM D257) 3.0E+16 Ω.cm
Dielectric strength (ASTM D149) 17 kV/mm
Additional information
HS Code 3916.9
Spool diameter (outside) -
Spool diameter (inner bore) -
Reel width -


* The typical values listed in this table should be considered as a reference. Actual values may vary depending on the 3D printer model used, part design and printing conditions. We recommend confirming the final results and properties with your own tests. For further information please refer to the product data sheet.

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