Highly translucent zirconium oxide for perfect aesthetics
RAW MATERIAL | SMYZIRCONIA TRANSLUCENT |
---|---|
Zirconium oxide ZrO2 | ≥ 89% |
Yttrium oxide + Y2O3 | 4-6% |
Hafnium oxide HfO2 | ≤ 5% |
Aluminium oxide AI2O3 | <1% |
Chemical solubility [µg/cm2] | < 100 |
PROPERTIES | SMYZIRCONIA TRANSLUCENT |
---|---|
Linear thermal expansion / CTE [10-6 K-1] | 10,1 ≤ CTE* ≤ 11,1(*span 25-500°C) |
Biaxial flexural strength [MPa]1 | 1270 |
Fracture Toughness [MPa*m1/2]1 | ≤ 5 |
Translucency [1-CR]*100 | 42%2 |
Type/Class | Type II / class 5 |
Highly translucent zirconium oxide for perfect aesthetics
RAW MATERIAL | SMYZIRCONIA BASIC |
---|---|
Zirconium oxide ZrO2 | ≥ 89% |
Yttrium oxide + Y2O3 | 4-6% |
Hafnium oxide HfO2 | ≤ 5% |
Aluminium oxide AI2O3 | <1% |
Chemical solubility [µg/cm2] | < 100 |
PROPERTIES | SMYZIRCONIA BASIC |
---|---|
Linear thermal expansion / CTE [10-6 K-1] | 10,1 ≤ CTE* ≤ 11,1(*span 25-500°C) |
Biaxial flexural strength [MPa]1 | 1270 |
Fracture Toughness [MPa*m1/2]1 | ≤ 5% |
Translucency [1-CR]*100 | 42%2 |
Type/Class | Type II / class 5 |
Highly translucent zirconium oxide for perfect aesthetics
RAW MATERIAL | SMY ZIRCONIA CLASSIC |
---|---|
Zirconium oxide ZrO2 | ≥ 89% |
Yttrium oxide + Y2O3 | 4-6% |
Hafnium oxide HfO2 | ≤ 5% |
Aluminium oxide AI2O3 | <1% |
Chemical solubility [µg/cm2] | < 100 |
PROPERTIES | SMY ZIRCONIA CLASSIC |
---|---|
Linear thermal expansion / CTE [10-6 K-1] | 10,1 ≤ CTE* ≤ 11,1(*span 25-500°C) |
Biaxial flexural strength [MPa]1 | 1270 |
Fracture Toughness [MPa*m1/2]1 | ≤ 5% |
Translucency [1-CR]*100 | 42%2 |
Type/Class | Type II / class 5 |
Highly translucent zirconium oxide for perfect aesthetics
RAW MATERIAL | SMY ZIRCONIA PREMIUM |
---|---|
Zirconium oxide ZrO2 | ≥ 85% |
Yttrium oxide + Y2O3 | 7-9% |
Hafnium oxide HfO2 | ≤ 5% |
Aluminium oxide AI2O3 | <1% |
Chemical solubility [µg/cm2] | < 100 |
PROPERTIES | SMY ZIRCONIA PREMIUM |
---|---|
Linear thermal expansion / CTE [10-6 K-1] | white: 1000 shaded: 880 |
Fracture Toughness [MPa*m1/2]1 | ≤ 3,5 |
Translucency [1-CR]*100 | 46%2 |
Type/Class | white: Type II / class 5 shaded: Typ II / class 4 |
Type/Class | Type II / class 5 |
Highly translucent multilayer Zirconia
SMY ZIRCONIA PREMIUM PLUS (MULTI) is polychromatic dental Zirconia (Y-TZP ZrO2) for the production of esthetic, monolithic restorations with an integrated color grading. The integrated color gradient and 880MPa flexural strength enable the efficient production of single-tooth restorations and bridges up to 3 units in the anterior and posterior region.
RAW MATERIAL | SMY ZIRCONIA PREMIUM PLUS (MULTI) |
---|---|
Zirconium oxide ZrO2 | ≥ 86% |
Yttrium oxide + Y2O3 | 6,5-8% |
Hafnium oxide HfO2 | ≤ 5% |
Aluminium oxide AI2O3 | <1% |
Chemical solubility [µg/cm2] | < 100 |
PROPERTIES | SMY ZIRCONIA PREMIUM PLUS (MULTI) |
---|---|
Linear thermal expansion / CTE [10-6 K-1] | 9,9 ≤ CTE* ≤ 10,9 (*span 25-500°C) |
Biaxial flexural strength [MPa]1 | 880 |
Fracture Toughness [MPa*m1/2]1 | ≤ 3,5 |
Translucency [1-CR]*100 | 46% |
Type/Class | Type II / class 4 |
IPS e.max is the Lithium Disilicate glass ceramic (LS2)for the press technique. This material offers exceptional esthetics and excellent fit and function. IPS e-max system offers a wide range of translucency levels and shades combined with a high strength of 470MPa.
In DMLS the metal powder is fused into a solid part by melting the Co-Cr alloy powder into using the focused laser beam. The frameworks are buildup additively layer by layer, usually 20µm thick resulting in stronger copings.
This process allows for highly complex geometries to be created directly from the 3D CAD data, fully automatically without any tools, producing frame works with higher accuracy and detailed resolution, good surface quality and excellent mechanical properties.
The CAD process detects and eliminates undercut up to 0.2 mm and the CAM process facilitates equal space for ceramic binding and avoids ceramic chip-off. The long span bridges up to 16 units can be fabricated and also the high precision allows easy crown fixing.
DMLS is more predictable with improved marginal fit, free of porosity Incredibly thinner margins when compared with conventional PFM.
SMYLABS PFM crowns and bridges are highly aesthetics like all ceramic crowns, but are far more affordable. One main benefit of PFM crowns and bridges is their durability.
The true-to-nature light scattering with the high translucency and brightness of the ceramic enable thorough masking of the metal framework
Out of all the aesthetics options for dental crowns, PFM is the strongest and most resistant to chips and cracks. Because of this strength, PFM crowns and bridges are ideal choices for restoring teeth located in the back of the mouth. They can also be recommended for patients who grind or clench their teeth. Their strength also makes them last longer than other types of dental crowns.
PFM crown and bridge are suitable for all areas of the mouth and most clinical conditions.
SMYLABS uses Co-Cr alloy for PFM which is free from Beryllium and Nickel.
A CAD/CAM milling machines fabricate provisional from polymethyl methacrylate
It replaces the analog techniques for producing provisional using monomer and polymer and offers highly accurate and anatomically detailed result. Provisional PMMA protects the prepared tooth and prevents the damage to the periodontal tissues until the final restoration can be made.
PMMA milled crowns are an adequate, temporary, fast and dependable way to save chair side time, at the same time as the hardness and resistance of the material is perfect for the preparation of provisional pieces. The material comes in a number of different colours to help you select the appropriate temporary solution for the patient.
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