Freeprint Gingiva 385 – 3D Resin for Flexible Artificial Gum
Référence: H103446

DETAX Freeprint Gingiva 385 3D resin for flexible gingival reproduction
The Freeprint Gingiva 385 3D resin from DETAX has been specially developed for the production of flexible gingival masks in digital dental laboratories. Its elastic formulation allows highly accurate reproduction of soft tissues around implants, screw-retained restorations and complex implant models.
Optimized for DLP 385 nm printers, this resin provides excellent dimensional stability, very high tear resistance and a natural aesthetic appearance thanks to its realistic pink gingival shade.
A gingival resin designed for digital dental laboratories
In modern implant workflows, accurate soft tissue reproduction has become essential for controlling emergence profiles, adjusting customized abutments and validating the final esthetics of restorations.
Freeprint Gingiva 385 allows the production of flexible gingival segments directly printed in 3D, with mechanical behavior close to natural soft tissue. It simplifies fitting procedures, insertion checks and clinical validation before final implant prosthesis delivery.
Laboratory advantages
- Realistic elasticity for soft tissue simulation.
- Excellent tear resistance during repeated removal procedures.
- Compatible with segmented implant models and CAD/CAM workflows.
- Outstanding dimensional stability after post-curing.
- Homogeneous surface allowing clean and fast finishing.
- Material free from BPA, MMA and THF-MA.
- Low odor during printing and cleaning procedures.
Dental applications
- Production of implant gingival masks.
- Soft tissue reproduction on digital models.
- Emergence profile esthetic control.
- Validation of restorations on multiple implants.
- Working models for implant prosthetics.
- Fixed prosthodontics and digital implantology workflows.
- Integration into CAD/CAM printed model workflows.
Precision and mechanical behavior
Freeprint Gingiva offers an excellent balance between flexibility and stability. This combination enables easy insertion around implant analogs while limiting excessive deformation.
The resin maintains strong cohesion after repeated handling, making it particularly useful for laboratories performing multiple fitting and validation procedures.
Recommended workflow
After printing, careful cleaning followed by a complete post-curing process is recommended to achieve optimal mechanical properties and long-term stability.
For complex gingival segments, proper support orientation improves cervical area precision and reduces manual finishing adjustments.
Technical specifications
| Product | Freeprint Gingiva 385 |
|---|---|
| Manufacturer | DETAX |
| SKU | H103446 |
| Compatible technology | DLP 385 nm |
| Material type | Flexible gingival resin |
| Color | Gingival pink |
| Packaging | 500 g |
| Free from | BPA / MMA / THF-MA |
| Applications | Gingival masks, implant models |
Documents & resources
Related products
Delivery
Delivery of Freeprint Gingiva 385 DETAX resin in a 500 g bottle, carefully protected for the transportation of photopolymer materials intended for dental laboratories.
FAQ — Freeprint Gingiva 385
Why use a 3D printed gingival mask?
Printed gingival segments allow realistic simulation of soft tissue behavior around implants and restorations.
This simplifies emergence profile control, abutment adjustment and esthetic validation before final clinical delivery.
Does the resin remain flexible after curing?
Yes. After proper post-curing, Freeprint Gingiva maintains elasticity suitable for repeated laboratory handling while offering excellent mechanical resistance.
Is the resin compatible with all 3D printers?
The formulation is optimized for DLP 385 nm systems.
Other platforms may work with adjusted parameters, but it is recommended to follow validated manufacturer profiles.
What are the benefits of a BPA-free and MMA-free formulation?
The absence of BPA, MMA and THF-MA improves laboratory comfort, reduces odors and meets the requirements of modern professional digital dental workflows.