A versatile, high HDT master pattern material for jewelry silicone molds and high visualization detailed prototypes of complex and fine designs.
Stunning surface finish and high definition for jewelry pieces prototyping and production with RTV/silicone molding
Figure 4® JEWEL MASTER GRY is a versatile master pattern material for high volume jewelry RTV/silicone molds and for prototype/fit models. The material’s high heat deflection temperature (300°C) ensures compatibility with a range of silicones for creating molds used in jewelry casting production workflows.
This material also delivers exceptional precise surface quality for design and functional prototyping, as well as snap-fit and stone-in-place testing. Figure 4 JEWEL MASTER GRY meets biocompatibility standard ISO 10933-5 for cytotoxicity, making it safe for try-ons and fittings.
Applications
High definition master patterns for making silicone or RTV molds especially for high volume, mass production of jewelry designs
Jewelry design and functional prototyping
Snap-fit and stone-in-place testing
Client fit/try-on models
Benefits
Compatible with a range of silicones
No silicone inhibition
High visualization
Safe for extended try-on testing and user fittings
Jewelry-specific build styles
MicroPointTM support tips minimizing support-to-part interaction and support scarring
Features
High heat deflection temperature
Exceptional surface finish and fine details definition
Fast speed:
Prototyping speed – 45 mm/hr @ 50µm Z resolution
Master pattern speed – 15 mm/hr @ 30µm Z resolution
High contrast gray color
Passes biocompatibility standard ISO 10933-5 for cytotoxicity
Download our Plastics material guide now and explore the range of advanced materials that exist to help you take advantage of a range of characteristics.
3D printing with plastics offers many choices for engineering grade materials, elastomers and composites. Do you need flexibility? Strength? Bio-compatibility? More?
3D print with plastics to build almost anything - used for prototyping, manufacturing, anatomical models and more. Select a plastic material and 3D technology to deliver the characteristics you need.