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Polymaker Fiberon™ PETG-ESD Anti-static Filament

Polymaker  |  Product Model: PM0115_175mm_500g
Regular price $1,600 TWD
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High-Performance Composite 3D Printing Filament

Fiberon™ PETG-ESD Antistatic PETG Filament

Combines excellent mechanical properties with electrostatic discharge protection, ideal for electronics, jigs, and industrial parts applications.

Fiberon™ PETG-ESD is based on high-performance PETG, with the addition of carbon nanotubes to provide ESD safety properties while maintaining good strength, toughness, and printing stability.

Fiberon PETG-ESD High-Performance Antistatic 3D Printing Filament

Features of Fiberon™ PETG-ESD

High Mechanical Properties

Provides better strength and reliability for industrial parts compared to general PETG filaments.

ESD Antistatic Properties

The addition of carbon nanotubes makes the material suitable for environments sensitive to electrostatic discharge.

Suitable for Functional Parts

Applicable for electronic jigs, equipment housings, tooling fixtures, and other antistatic functional parts.

What is ESD?
ESD stands for Electrostatic Discharge. In electronic manufacturing and precision equipment environments, static electricity can cause component damage or equipment malfunction, thus requiring materials with appropriate static dissipation capabilities.

Recommended Printing Parameters for Fiberon™ PETG-ESD

Nozzle Temperature 250~290°C
Recommended Print Speed 70~80 mm/s
Bed Temperature 30~50°C
Part Cooling Fan Approximately 20%, adjustable based on strength or surface quality requirements
Test Nozzle Specification 0.4 mm
Parameter Reminder: The above values are suggested starting points for a 0.4 mm nozzle environment. Actual settings should still be adjusted according to the printer, nozzle material, model structure, ambient temperature, and filament dryness.
Does PETG-ESD require a cooling fan?

Prioritizing part strength: It is recommended to reduce or turn off the part cooling fan to improve layer adhesion.

Prioritizing surface quality: The cooling fan can be moderately turned on and gradually adjusted based on overhangs, bridging, and surface formation.