With Ultrafuse® PLA Tough filaments, a highly versatile biocompatible and biobased material is made and specially developed for the needs of professional users. It effortlessly accommodates validated high-printing speeds up...
With Ultrafuse® PLA Tough filaments, a highly versatile biocompatible and biobased material is made and specially developed for the needs of professional users. It effortlessly accommodates validated high-printing speeds up...
With Ultrafuse® PLA Tough filaments, a highly versatile biocompatible and biobased material is made and specially developed for the needs of professional users. It effortlessly accommodates validated high-printing speeds up...
With Ultrafuse® PLA Tough filaments, a highly versatile biocompatible and biobased material is made and specially developed for the needs of professional users. It effortlessly accommodates validated high-printing speeds up...
With Ultrafuse® PLA Tough filaments, a highly versatile biocompatible and biobased material is made and specially developed for the needs of professional users. It effortlessly accommodates validated high-printing speeds up...
With Ultrafuse® PLA Tough filaments, a highly versatile biocompatible and biobased material is made and specially developed for the needs of professional users. It effortlessly accommodates validated high-printing speeds up...
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 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 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...
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