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Filament Fiberlogy Impact PLA 1.75 mm 0.85 kg — Fiberlogy (Gray)
Filament Fiberlogy Impact PLA 1.75 mm 0.85 kg — Fiberlogy (Gray)
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Filament Fiberlogy Impact PLA 1.75 mm 0.85 kg — Fiberlogy (Gray)
Leave your address - as soon as the price of the product goes down, you'll know about it right away
Filament Fiberlogy Impact PLA 1.75 mm 0.85 kg — Fiberlogy (Gray)
Filament Fiberlogy Impact PLA 1.75 mm 0.85 kg — Fiberlogy (Gray)
Fiberlogy Impact PLA 1.75 mm (0.85 kg) in gray is a general-purpose 3D printing filament formulated to combine the ease of printing associated with PLA and improved impact resistance for functional models. Supplied on a 0.85 kg spool with 1.75 mm diameter, this filament is intended for use on a wide range of desktop FDM/FFF printers and delivers consistent extrusion, good dimensional stability and surface quality typical for PLA materials.
Impact PLA offers a balance of rigidity and enhanced toughness compared to standard PLA, allowing parts to withstand light mechanical stress while remaining easy to print. Its 1.75 mm diameter and controlled spool winding support stable filament feeding. The gray color provides a neutral finish suitable for prototypes and visual models without post-processing when a matte or semi-gloss appearance is acceptable.
Load the 1.75 mm filament into the printer following the manufacturer instructions for filament change and feeding. Use printing temperatures and settings appropriate for PLA-based materials; start with a typical nozzle temperature range for PLA and adjust as needed to achieve consistent extrusion and layer adhesion. Ensure the print bed surface and first-layer settings deliver good adhesion for the chosen model and finish. Monitor the first layers to confirm proper flow and calibration before running long prints.
For best results, print at moderate speeds and use a heated bed if available to reduce warping and improve first-layer adhesion. Store the spool in a dry environment or sealed container with desiccant to maintain filament quality. When stronger mechanical properties are required, consider adjusting infill density, wall thickness and print orientation rather than increasing nozzle temperature beyond recommended ranges.
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