Brand Name: | Beaming |
Model Number: | 98mm |
MOQ: | 1 |
Price: | To be negotiable |
Packaging Details: | Wooden crate |
Payment Terms: | T/T |
Beaming Dental Zirconia The Top Choice for Strong and Natural-Looking Dental Restorations
Engineered for digital dentistry precision, the CERAMIC Monolithic Zirconia Block is a high-strength, fully contoured material optimized for CAD/CAM milling. Its single-phase, monolithic design guarantees consistent material properties throughout the entire block, promoting reliability and simplifying the fabrication process.
Purpose
This block is intended for the efficient production of definitive, long-lasting dental restorations. It is ideally suited for milling single-unit crowns, multi-unit fixed dental prostheses (FDPs), and implant superstructures (abutment crowns), providing a precise fit and optimal function directly from the milled state after sintering.
Advantages
Major advantages are its exceptional dimensional stability during the sintering process, leading to highly accurate marginal fit crucial for restoration longevity. The material boasts superior mechanical properties, including high flexural strength and resistance to fatigue, ensuring it can endure the cyclic loads of mastication for years. The monolithic design drastically reduces processing steps and potential failure points compared to veneered zirconia.
Features
Key features include outstanding resistance to corrosion and low-temperature degradation (LTD), maintaining its integrity in the challenging oral environment. It offers high-temperature stability for predictable sintering outcomes. Available in multiple clinically relevant thicknesses (e.g., 14mm, 18mm, 22mm, 25mm) and a comprehensive selection of pre-sintered Vita shades (e.g., A1, A4, B3, C1, D2) for aesthetic flexibility. Its compatibility ensures smooth integration into digital workflows.
Parameter Table
Thickness Range: 14mm, 18mm, 22mm, 25mm
Shade Examples: A1, A4, B3, C1, D2
Key Durability: Resists low-temperature degradation
Fit Accuracy: High (Dimensional stability)