PLA is Poly-Lactic-Acid, a biodegradable polymer with a low melting point. It is an easy material to print with and Ultrafuse PLA gives a smooth printing result. This most used...
PLA is Poly-Lactic-Acid, a biodegradable polymer with a low melting point. It is an easy material to print with and Ultrafuse PLA gives a smooth printing result. This most used...
PLA is Poly-Lactic-Acid, a biodegradable polymer with a low melting point. It is an easy material to print with and Ultrafuse PLA gives a smooth printing result. This most used...
The hardest elastomer in Forward AM Forward AM's flexible product line Ultrafuse® TPU 64D is the hardest elastomer in Forward AM Forward AM's flexible product line. The material shows a...
The 3D filament Kimya ABS-ESD belongs to the styrenic polymer family. Acrylonitrile butadiene (ABS-ESD) is a thermoplastic polymer offering protection against electrostatic discharge. It provides a high level of impact...
The 3D filament Kimya ABS-ESD belongs to the styrenic polymer family. Acrylonitrile butadiene (ABS-ESD) is a thermoplastic polymer offering protection against electrostatic discharge. It provides a high level of impact...
Kimya PETG-R ("R for recycled") 3D filament is formulated based on industrial waste from a luxury and medical packaging company. Recycled, but equally powerful, it has similar technical properties to the...
Kimya PETG-R ("R for recycled") 3D filament is formulated based on industrial waste from a luxury and medical packaging company. Recycled, but equally powerful, it has similar technical properties to the...
The 3D filament Kimya PETG-S is produced via copolymerization with PET. Polyethylene terephtalate glycol (PETG) is a saturated polyester polymer. It offers a perfect balance between flexibility and mechanical resistance...
The 3D filament Kimya PETG-S is produced via copolymerization with PET. Polyethylene terephtalate glycol (PETG) is a saturated polyester polymer. It offers a perfect balance between flexibility and mechanical resistance...
The 3D filament Kimya PLA-R is a recycled and biodegradable polymer: this biosourced homopolymer can be obtained from corn starch. Polylactic acid (PLA) is a natural alternative to polyethylene. It...
The 3D filament Kimya PLA-R is a recycled and biodegradable polymer: this biosourced homopolymer can be obtained from corn starch. Polylactic acid (PLA) is a natural alternative to polyethylene. It...
The 3D filament Kimya PLA-R is a recycled and biodegradable polymer: this biosourced homopolymer can be obtained from corn starch. Polylactic acid (PLA) is a natural alternative to polyethylene. It...
The Kimya PLA-HI 3D filament is a biosourced polymer obtained from corn starch. Polylactic Acid -HI (PLA-HI) is aHigh Impact‚� filament offering increased impact resistance: it was formulated to be...
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