Ceramic glass blocks
Full ceramics are characterized by excellent aesthetic, which is due to the integrated transparency, opalescence and fluorescence. The materials we use are based on lithium disilicate and reinforced with zirconium.
Dentalscan offers maximum material diversity – glass ceramics, hybrid ceramics, zirconium dioxide, esthetic composite blocks, PMMA Provi – for individual tooth restorations such as crowns, inlays, onlays and veneers, bridges as temporary or permanent dental solutions.
We also create CAD/CAM products used to fabricate custom abutments for dental implants, which are very important for stabilizing the prosthetic within the jawbone for long-term biocompatibility, such as: printed models, wax-up models, surgical guides.
Full ceramics are characterized by excellent aesthetic, which is due to the integrated transparency, opalescence and fluorescence. The materials we use are based on lithium disilicate and reinforced with zirconium.
Hybrid ceramics are very similar to the natural substances of teeth and immensely strong. This composite material guarantees excellent distribution of masticatory force while the polymer network offers outstanding absorption of intraoral load.
The major advantage of composite is resistant to bending and plaque. The material can be used as a milled veneer or a monolithic, fully anatomical restoration.
The major advantages of zirconium include biocompatibility and long-lasting. Being made of crystal, zirconium is very durable, easily withstanding the most vigorous chewing and biting activities.
Indicated for manufacturing temporary crowns and bridges, PMMA Provi mills efficiently and polisher easily. The material is fluorescent and biocompatible.
Titanium has a very high mechanical strength. It used in individually designed abutments and bases with perfect fit to supply the most common implant systems.
Resin, which we use, is perfect for dental and general model making. It characterized by high detail, smooth surface finish, and a neutral base tone great for finalizing form.