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Standard detail
Standard detail.
Standard detail.
Thin layers, high detail.
Medium-high detail.
Thick layers. Suitable for tough, end use parts with low detail.
Standard engineering prototyping plastic. Exceptionally durable and long-lasting filament. Functional prototyping, casings, end-use parts, tools and art. The surface can be easily post-processed with acetone and mechanical treatment.
Standard engineering prototyping plastic. Exceptionally durable and long-lasting filament. Functional prototyping, casings, end-use parts, tools and art. The surface can be easily post-processed with acetone and mechanical treatment.
Standard engineering prototyping plastic. Exceptionally durable and long-lasting filament. Functional prototyping, casings, end-use parts, tools and art. The surface can be easily post-processed with acetone and mechanical treatment.
Standard engineering prototyping plastic. Exceptionally durable and long-lasting filament. Functional prototyping, casings, end-use parts, tools and art. The surface can be easily post-processed with acetone and mechanical treatment.
Standard engineering prototyping plastic. Exceptionally durable and long-lasting filament. Functional prototyping, casings, end-use parts, tools and art. The surface can be easily post-processed with acetone and mechanical treatment.
Standard engineering prototyping plastic. Exceptionally durable and long-lasting filament. Functional prototyping, casings, end-use parts, tools and art. The surface can be easily post-processed with acetone and mechanical treatment.
Standard engineering prototyping plastic. Exceptionally durable and long-lasting filament. Functional prototyping, casings, end-use parts, tools and art. The surface can be easily post-processed with acetone and mechanical treatment.
ASA has good mechanical properties, similar to ABS, with improved UV stability and high chemical resistance. Commonly used for outdoor applications.
ASA has good mechanical properties, similar to ABS, with improved UV stability and high chemical resistance. Commonly used for outdoor applications.
ASA has good mechanical properties, similar to ABS, with improved UV stability and high chemical resistance. Commonly used for outdoor applications.
ASA has good mechanical properties, similar to ABS, with improved UV stability and high chemical resistance. Commonly used for outdoor applications.
ASA has good mechanical properties, similar to ABS, with improved UV stability and high chemical resistance. Commonly used for outdoor applications.
Z-HIPS 3D printing material is best for parts and models requiring smooth surfaces which can be effortlessly post-processed. Its semi-mat texture masks the layering to achieve a look of mass-produced items. The material's hardness makes it perfect for mechanical prototyping and performance testing. Z-HIPS filament works great in designing consumer products and electronic casings.
Z-HIPS 3D printing material is best for parts and models requiring smooth surfaces which can be effortlessly post-processed. Its semi-mat texture masks the layering to achieve a look of mass-produced items. The material's hardness makes it perfect for mechanical prototyping and performance testing. Z-HIPS filament works great in designing consumer products and electronic casings.
Z-HIPS 3D printing material is best for parts and models requiring smooth surfaces which can be effortlessly post-processed. Its semi-mat texture masks the layering to achieve a look of mass-produced items. The material's hardness makes it perfect for mechanical prototyping and performance testing. Z-HIPS filament works great in designing consumer products and electronic casings.
Z-HIPS 3D printing material is best for parts and models requiring smooth surfaces which can be effortlessly post-processed. Its semi-mat texture masks the layering to achieve a look of mass-produced items. The material's hardness makes it perfect for mechanical prototyping and performance testing. Z-HIPS filament works great in designing consumer products and electronic casings.
Z-HIPS 3D printing material is best for parts and models requiring smooth surfaces which can be effortlessly post-processed. Its semi-mat texture masks the layering to achieve a look of mass-produced items. The material's hardness makes it perfect for mechanical prototyping and performance testing. Z-HIPS filament works great in designing consumer products and electronic casings.
Z-HIPS 3D printing material is best for parts and models requiring smooth surfaces which can be effortlessly post-processed. Its semi-mat texture masks the layering to achieve a look of mass-produced items. The material's hardness makes it perfect for mechanical prototyping and performance testing. Z-HIPS filament works great in designing consumer products and electronic casings.
Z-HIPS 3D printing material is best for parts and models requiring smooth surfaces which can be effortlessly post-processed. Its semi-mat texture masks the layering to achieve a look of mass-produced items. The material's hardness makes it perfect for mechanical prototyping and performance testing. Z-HIPS filament works great in designing consumer products and electronic casings.
PC-ABS is a high-impact engineering thermoplastic ideal for functional prototyping, tooling and low-volume manufacturing. Get the best of two FDM materials, the strength and heat resistance of PC and the flexibility of ABS. PC-ABS also delivers excellent feature definition and surface finish.
PC-ABS is a high-impact engineering thermoplastic ideal for functional prototyping, tooling and low-volume manufacturing. Get the best of two FDM materials, the strength and heat resistance of PC and the flexibility of ABS. PC-ABS also delivers excellent feature definition and surface finish.
PEEK is an exotic material with exceptional strength, thermal, and chemical resistance qualities. In many cases, it is used in applications to replace metal parts. One of the most valuable qualities of printing with PEEK is its heat deflection. With a heat deflection temperature of 160C, PEEK is excellent for prints that need to withstand high heat. What makes PEEK an exceptional material for functional use is its chemical resistance. This filament is known to not only bring strength but to not break down under extremely harsh chemicals.
Thermoplastic material with improved mechanical properties over PLA and excellent chemical and moisture resistance.
Thermoplastic material with improved mechanical properties over PLA and excellent chemical and moisture resistance.
An engineering grade PLA. High detail. Useful for durable prototypes and end use parts in cool, indoor applications. Not suitable for outdoor or high temperatures.
An engineering grade PLA. High detail. Useful for durable prototypes and end use parts in cool, indoor applications. Not suitable for outdoor or high temperatures.
An engineering grade PLA. High detail. Useful for durable prototypes and end use parts in cool, indoor applications. Not suitable for outdoor or high temperatures.
An engineering grade PLA. High detail. Useful for durable prototypes and end use parts in cool, indoor applications. Not suitable for outdoor or high temperatures.
An engineering grade PLA. High detail. Useful for durable prototypes and end use parts in cool, indoor applications. Not suitable for outdoor or high temperatures.
An engineering grade PLA. High detail. Useful for durable prototypes and end use parts in cool, indoor applications. Not suitable for outdoor or high temperatures.
Ultem™ 9085 PEI (Polyether Imide) is an amorphous, high-performance polymer that combines excellent thermal properties, exceptional dimensional stability, inherent flame retardancy, and good chemical resistance. Ultem™ 9085 resin offers the ability to create parts with excellent properties at elevated temperatures due to a high glass transition temperature (Tg) of 186°C.
Ultem™ 1010 PEI (Polyether Imide) is an amorphous, high-performance polymer that combines excellent thermal properties, exceptional dimensional stability, inherent flame retardancy, and good chemical resistance. Ultem™ resin offers the ability to create parts with excellent properties at elevated temperatures due to a high glass transition temperature (Tg) of 217°C.

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