UV Curable resins for every printing technology (DLP, Figure 4, SLA, LCD). Choose the right material for your application from our broad range of specialty or general use resins.
Opaque rigid white production-grade plastic for same-day parts. This biocompatible-capable material provides a smooth surface finish, long-term environmental stability, and long-lasting, clean white color.
A rubber-like material for accelerated designing and prototyping of a wide variety of elastomeric products for industrial and consumer goods applications. This black elastomeric material offers excellent compressive characteristics.
A flexible material for the production of exceptionally durable polypropylene-like parts for a wider variety of prototyping, functional testing and low volume production applications. It provides outstanding flexibility and accuracy, enabling many applications.
Optimized for clean and easy burnout for direct casting, this high contrast green castable material delivers finely detailed, high-resolution jewelry patterns to produce high quality jewelry pieces rapidly.
A rigid amber material for applications requiring biocompatibility, translucency and/or thermal resistance. It provides parts with crisp details, that can be sterilized and tested at high temperature, over 100 °C.
A rigid white material for applications requiring biocompatibility and/or thermal resistance. It provides beautiful parts that can be sterilized and tested at high temperature, over 100 °C.
A flame-retardant, high-temperature resistant black plastic, exceeding UL94 V0 standards and withstanding temperatures over 150°C. Figure 4 High Temp 150°C FR Black is a rigid, flame-retardant material ideal for direct production of flame-resistant parts. Offering long-term environmental stability and an injection molded-like surface quality, it's designed for consumer, transportation, and aerospace applications that require high-temperature performance. This material is tested for 8 years of indoor and 1.5 years of outdoor mechanical performance, ensuring functional stability under real-world conditions.