Dental Model Repair Biocompatible Resin Kit ASTM D2204 Safe And Effective
| Attribute | Value |
|---|---|
| Color | orange gray |
| Packaging | 1kg/bottle 5kg/bottle |
| Applicable equipment | regular DLP printer and LCD printer |
| Hardness | High |
| Durability | Long-lasting |
| Material | Resin |
Biocompatible Resin Kit For Safe And Effective Dental Model Repair
| parameter | Test standards | unit | result |
|---|---|---|---|
| Shore | ASTM D2240 | Shore D | 76 |
| Bending strength | ASTM D790 | Mpa | 75-82 |
| Bending modulus | ASTM D790 | Mpa | 2050-2215 |
| Notch impact strength | ASTM D256 | Mpa | 36-41.5 |
| Breaking elongation rate | ASTM D638 | % | 7-9 |
| Water absorption rate | ASTM D570 | % | 0.7-0.95 |
| Hot deformation temperature | / | ℃ | <75 |
Clear DLP Resin for Implants and Clear Aligners, Unlock versatility with our clear resin, perfect for replicating transparent features like implants and clear aligners. Compatible with DLP and LCD printers, it enables the creation of transparent models for treatment planning and patient education.
- Seamless Blending: Enjoy effortless blending and seamless integration of repaired sections with our resin, facilitating smooth transitions and flawless finishes for aesthetically pleasing results.
- Versatile Application: Our dental model resin is suitable for a wide range of repair applications, including crown and bridge models, implant replicas, and orthodontic appliances, offering versatility in dental workflows.
- Compatibility: Experience seamless integration into existing workflows with our resin's compatibility with various dental materials, ensuring efficient repairs and consistent results.
- Consistent Quality: Trust in the consistent quality of our resin, manufactured to stringent standards to deliver reliable results with every batch, ensuring consistency and reliability in dental repairs.
- Fracture Repair: For larger breaks on dental models, stronger dental model resins offer a durable solution. These resins can restore complex fractures, ensuring the model remains functional for various applications.
- Tooth Replacement: Damaged or missing teeth on a dental model can be recreated using tooth-matched dental model resins. These resins mimic the color and texture of natural teeth, resulting in a visually realistic and accurate representation.
- Adding Anatomical Details: Missing anatomical details on a dental model can be recreated with dental model resin. This might involve sculpting features like frenulums or gingival tissues for a more complete and accurate representation.
- Prototyping Functional Devices: Dental model resin can be used to prototype functional devices like bite splints or retainers. The durability and versatility of the resin allow for testing and refinement before creating the final product.
Answer: The curing time can vary depending on factors like the resin type and the curing method used. Typically, dental model resin for repairing offers fast forming speeds, with curing times ranging from a few minutes to around an hour.
Answer: Dental model resin designed for repairs often boasts high surface hardness, ensuring durability and resistance to wear over time. This hardness contributes to the longevity of repairs, providing lasting results that withstand daily use and manipulation.
Answer: Post-treatment procedures for dental model resin repairs are usually minimal due to the resin's short post-treatment time. These procedures may include simple steps such as rinsing the repaired model with water or applying a surface finish, depending on the specific resin and repair requirements.
Answer: Stable performance ensures consistent results throughout the repair process, minimizing the risk of defects or inconsistencies. Dental model resin engineered for repairing maintains stable performance characteristics, such as viscosity and curing behavior, ensuring reliable and precise repairs.
Answer: When choosing dental model resin for repairs, factors such as fast forming speed, high surface hardness, short post-treatment time, and stable performance are crucial. Additionally, compatibility with printing equipment and materials, as well as biocompatibility and aesthetic properties, may also influence the selection process.
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