We’re growing a portfolio of powder materials.
With SLS, a laser fuses together powdered polymer particles, building a part layer by layer. This print method is best for producing highly-accurarate parts with complex geometries. Since the powder supports the part as it’s printed, no additional support material is needed.
With high speed sintering (HSS), a thin layer of loose powder is applied to a building platform. An inkjet print head moves over the entire surface of the platform, depositing an infrared-absorbing fluid directly onto the powder where sintering is desired. The build area is then illuminated with infrared light, fusing the powder under the fluid into a layer.
The first-ever PBT powder commercially available for selective laser sintering (SLS). The material is the ideal solution for small series production via additive manufacturing in industrial applications requiring electrical insulation such as automotive electronics.
Addigy® P3001 is a thermoplastic elastomer material for SLS 3D printing technology that combines high energy return with easy processing. The soft elastomer meets the requirements of the European Toy Safety Directive 2009/48/EC and meets ISO 10993-5 cytotoxicity and ISO 10995-10 irritation and sensitization biocompatibility standards.
Addigy® PPU 74D98 is a thermoplastic polyurethane grade that's specifically designed for powder bed fusion techniques such as Selective Laser Sintering (SLS) and High-Speed Sintering (HSS). This material is tough, rigid, and has very good resistance to things like hydrolysis and microbial growth. It also has very good low-temperature impact strength and is UV resistant, making it a great choice for a wide range of applications.
High powder flowability, useful for e.g. tank feeder systems. Aromatic ether type; high toughness, impact strength, flexibility, and abrasion resistance; hydrolytic stability.
Extra-high powder flowability, useful for tank feeder systems. Aliphatic ether/ester type; good low-temperature flexibility; high rebound resilience; microbial and hydrolysis resistance; no yellowing under the action of UV light.
Extra-high powder flowability, useful for e.g. tank feeder systems. Ether type; high toughness, impact strength, flexibility, and abrasion resistance. Inherent resistance to salt water stress cracking and hydrolysis.
The first-ever PBT powder commercially available for selective laser sintering (SLS). The material is the ideal solution for small series production via additive manufacturing in industrial applications requiring electrical insulation such as automotive electronics.
Addigy® P3001 is a thermoplastic elastomer material for SLS 3D printing technology that combines high energy return with easy processing. The soft elastomer meets the requirements of the European Toy Safety Directive 2009/48/EC and meets ISO 10993-5 cytotoxicity and ISO 10995-10 irritation and sensitization biocompatibility standards.
Addigy® PPU 74D98 is a thermoplastic polyurethane grade that's specifically designed for powder bed fusion techniques such as Selective Laser Sintering (SLS) and High-Speed Sintering (HSS). This material is tough, rigid, and has very good resistance to things like hydrolysis and microbial growth. It also has very good low-temperature impact strength and is UV resistant, making it a great choice for a wide range of applications.
High powder flowability, useful for e.g. tank feeder systems. Aromatic ether type; high toughness, impact strength, flexibility, and abrasion resistance; hydrolytic stability.
Extra-high powder flowability, useful for tank feeder systems. Aliphatic ether/ester type; good low-temperature flexibility; high rebound resilience; microbial and hydrolysis resistance; no yellowing under the action of UV light.
Extra-high powder flowability, useful for e.g. tank feeder systems. Ether type; high toughness, impact strength, flexibility, and abrasion resistance. Inherent resistance to salt water stress cracking and hydrolysis.
Addigy PPU 94AP6 is a thermoplastic polyurethane powder designed for powder bed fusion 3D printing technologies such as selective laser sintering (SLS) and high speed sintering (HSS).