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3D printer filament Spectrum PET-G Premium 1.75 mm — PETG, Silver, 1 kg
3D printer filament Spectrum PET-G Premium 1.75 mm — PETG, Silver, 1 kg
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3D printer filament Spectrum PET-G Premium 1.75 mm — PETG, Silver, 1 kg
Leave your address - as soon as the price of the product goes down, you'll know about it right away
3D printer filament Spectrum PET-G Premium 1.75 mm — PETG, Silver, 1 kg
3D printer filament Spectrum PET-G Premium 1.75 mm — PETG, Silver, 1 kg
Spectrum PET-G Premium 1.75 mm in Silver is a 1 kg spool of polyethylene terephthalate glycol (PETG) filament designed for FDM/FFF 3D printing. This filament combines good strength, chemical resistance and low shrinkage to deliver dimensional stability and reliable layer adhesion. Spectrum PET-G Premium prints with minimal warping and reduced moisture sensitivity compared with many other thermoplastics, making it suitable for parts that require durability and some flexibility as well as near-transparent finishes in lighter colours.
Spectrum PET-G Premium offers very low shrinkage and improved creep resistance due to strong interlayer cohesion, which reduces mechanical anisotropy in printed parts. It provides near-trouble-free printing, strong layer bonding and good chemical resistance. Transparent and lightly pigmented variants can achieve a near-transparency effect with a small number of outer perimeters. Pellets and pigments used in production are approved for food contact.
Load the 1.75 mm Spectrum PET-G Premium filament onto an FDM/FFF 3D printer equipped for PETG. Follow printer manufacturer's guidance for nozzle and bed temperatures appropriate for PETG; spool labeling includes recommended printing temperatures. Use a heated bed and moderate bed adhesion (tape, glue stick or PEI sheet) to reduce the risk of warping. Ensure the filament is dry before printing — the product is supplied vacuum-packed with a moisture absorber, but store it in a dry place after opening. Adjust print speed and retraction settings to minimise stringing while preserving layer bonding.
For dimensionally accurate parts, print with sufficient perimeters and infill to achieve required strength; for semi-transparent results, reduce the number of outer perimeters and use appropriate layer thickness. If printing mechanical components, allow for small tolerances and consider post-processing annealing if higher dimensional stability under load is needed.
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