High Aesthetics and Density 6.0-6.1 G/cm3 The Ultimate Solution for Implant Restorations Excellence
The Layered Zirconia product is made up of a high-density zirconia core and a porcelain layer with a thickness of 0.3-0.5mm. The porcelain layer is polished to perfection, providing a smooth and natural-looking finish that mimics the appearance of natural teeth. Additionally, the polished surface finish of the porcelain layer also ensures that the restoration is resistant to staining and discoloration.
The Layered Zirconia product is an ideal solution for a wide range of dental restorations, including single crowns, bridges, and implant restorations. The high-density zirconia core provides good toughness and excellent resistance to chipping and cracking, ensuring that the restoration is durable enough to withstand the forces of everyday use.
Furthermore, the Layered Zirconia product has excellent wear resistance of the porcelain layer, which is essential in ensuring that the restoration maintains its natural appearance and functionality over time. This feature is particularly important in areas of the mouth that experience high levels of wear and tear, such as the molars.
The Layered Zirconia product has a density of 6.0-6.1 G/cm3, making it a highly durable and robust dental restoration material. Additionally, the high translucency of the porcelain layer ensures that the restoration blends seamlessly with the surrounding natural teeth, providing patients with a restoration solution that is both aesthetically pleasing and functional.
In conclusion, if you are looking for a dental restoration material that combines durability, aesthetics, and functionality, then the Layered Zirconia product is the perfect solution. With its good toughness, wear resistance of porcelain layer, and high translucency, this product is guaranteed to provide patients with a long-lasting and natural-looking restoration solution.
Technical Parameter | Value |
---|---|
Thermal Conductivity | 3 W/mK |
Sintering Temperature | 1350-1450°C |
Surface Finish | Polished |
Indications | Single Crowns, Bridges, Implant Restorations |
Flexural Strength | 900-1200 MPa |
Material | Zirconia |
Coefficient Of Thermal Expansion | 10.5-11.5 X 10^-6 K^-1 |
Translucency | High |
Chemical Composition | ZrO2 + Y2O3 |
Manufacturing Process | CAD/CAM Milling |
Well-bedded and wear resistant porcelain layer
The Joydeta Dental Biomimetic Layered Zirconia is ideal for a wide range of applications, including crowns, bridges, and implants. This product is designed to provide excellent aesthetic results, as it mimics the natural appearance of teeth. It is perfect for use in both anterior and posterior teeth, providing excellent durability and wear resistance.
This layered zirconia is manufactured in China, using the highest quality materials. It has a density of 6.0-6.1 G/cm3, making it strong and durable. The thermal conductivity of this material is 3 W/mK, which makes it an excellent choice for use in dental applications.
The coefficient of thermal expansion of the Joydeta Dental Biomimetic Layered Zirconia is 10.5-11.5 X 10^-6 K^-1, which makes it highly resistant to thermal shock. This material is chemically composed of ZrO2 + Y2O3, which provides it with excellent mechanical properties.
The Joydeta Dental Biomimetic Layered Zirconia is perfect for use in a wide range of scenarios. It is an excellent choice for patients who require high-quality dental restorations that are both strong and natural-looking. This material is ideal for use in situations where aesthetics are a concern, such as in the front teeth.
In conclusion, Joydeta Dental Biomimetic Layered Zirconia is an excellent choice for dentists who require a high-quality dental material that is strong, durable, and natural-looking. It is perfect for use in a wide range of applications, including crowns, bridges, and implants. This product is manufactured in China, using the highest quality materials, and has a density of 6.0-6.1 G/cm3. It is highly resistant to thermal shock, making it perfect for use in a variety of scenarios.