Prices + Stock updated 10 May @ 13:42
This PETG (sometimes called T-Glass) is 1.75mm in diameter on a 1KG spool.
Recommended Temperature: 230-250 degrees
A heated bed is not required, though can make for easier printing.
If you have a heated bed, we recommend setting it to 80°C
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PETG Filament - 1.75 mm - Blue - 1kg Spool
This PETG (sometimes called T-Glass) is 1.75mm in diameter on a 1kg spool.
Recommended Temperature: 230-250 °C
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PETG Filament - 1.75 mm - Red - 1kg Spool
This PETG (sometimes called T-Glass) is 1.75mm in diameter on a 1kg spool.
Recommended Temperature: 230-250 °C
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PETG Filament - 1.75 mm - Green - 1kg Spool
This PETG (sometimes called T-Glass) is 1.75mm in diameter on a 1kg spool.
Recommended Temperature: 230-250 °C
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PETG Filament - 1.75 mm - Natural (Transparent) - 1kg Spool
This PETG is 1.75mm in diameter on a 1kg spool.
Recommended Temperature: 230-250 °C
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PETG Filament - 1.75 mm - White - 1kg spool
This PETG (sometimes called T-Glass) is 1.75mm in diameter on a 1KG spool.
Recommended Temperature: 230-250 degrees
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PETG Filament - 1.75 mm - Green - 200g Spool
This PETG (sometimes called T-Glass) is 1.75mm in diameter on a 1kg spool.
Recommended Temperature: 230-250 °C
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PETG Filament - 1.75 mm - Black - 200g Spool
This PETG (sometimes called T-Glass) is 1.75mm in diameter on a 200g spool.
Recommended Temperature: 230-250 °C
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Kimya PETG-S Filament - 1.75mm - Black - 750g - UNTIL SOLD OUT
The PETG-S Kimya 3D Filament offers a great balance of flexibility and strength.
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Kimya PETG + Carbon Fibre - 1.75mm - Black - 500g Spool
PETG CARBON has an excellent tensile modulus. PETG is reinforced with carbon fibers, giving it high impact strength
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PETG Filament - 1.75 mm - Yellow - 1kg Spool
This PETG (sometimes called T-Glass) is 1.75mm in diameter on a 1kg spool.
Recommended Temperature: 230-250 °C
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Spectrum Matt PETG - Deep Black - 1.75mm - 1kg Spool
Spectrum PET-G MATT is a PET-G-based material with a chemical composition modified so that it is possible to obtain matte surfaces of printed object. The matte finish of printed items considerably improves their aesthetic properties and also minimises the visibility of layers on the side surfaces of printed items.
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