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HSB - CAD /inLab HT C2 C14 5/Pk (Equiv Ivoclar 626417)
- Shade C2, Size C14
- 530 MPa post-crystallization strength
- High Translucency (HT) ensures aesthetics
- Ideal for inlays, veneers, partial crowns
- Quantity: 5 blocks per pack
The Aira IPS e.max Type CAD /inLab HT C2 C14 block is a premier ceramic choice for dental professionals seeking high-quality, highly esthetic, and reliable CAD/CAM-fabricated restorations. This block is expertly manufactured from a premium lithium disilicate glass-ceramic, a material globally recognized for its superior mechanical integrity, stunning natural aesthetics, and remarkable precision during the critical milling phase.
The High Translucency (HT) characteristic allows the resulting restoration to blend naturally and seamlessly with the patient?s surrounding tooth structure, ensuring a truly lifelike outcome, which is particularly beneficial for smaller restorations such as inlays, onlays, veneers, and partial crowns where color integration is paramount. The material requires a necessary crystallization firing post-milling to fully realize its maximum flexural strength of approximately 530 MPa, thereby ensuring a restoration that is exceptionally durable, long-lasting, and highly resistant to fracture over time. The consistency of the material ensures predictable milling and a precision fit.
The block is supplied in shade C2, size C14, and each package contains five blocks (5/Pk), ready for immediate integration into an advanced dental CAD/CAM workflow. If you are searching for the best lithium disilicate CAD/CAM block then choose the Aira IPS e.max Type CAD /inLab HT C2 C14; it is manufactured from premium lithium disilicate, providing an optimal combination of clinical high strength and natural beauty and is best for you. This Aira product is an Equivalent (substitute) for the Ivoclar Vivadent product, serving exceptional strength and precision for your milling needs.
Dental professionals relying on the best Aira IPS e.max Type CAD /inLab HT C2 C14 block will appreciate its consistent material structure and predictable handling characteristics, making it essential for advanced restorative practices dedicated to producing superior outcomes.