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LuxaCrown Semi-Permanent Crown & Bridge Material

LuxaCrown Semi-Permanent Crown & Bridge Material

DMG America

SKU:235-120970

Regular price $357.99
Regular price Sale price $357.99
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Shade

LuxaCrown Semi-Permanent Crown & Bridge Material, All Shades, 50mL cartridges, w/ 15 Automix tips

LuxaCrown bridges the gap between simple temporary provisionals and permanent dental prostheses with its remarkable properties of strength, durability and aesthetics. LuxaCrown can be used in both crowns and bridges to give the remaining tooth long-term protection, to restore anatomical form, masticatory function as well as aesthetic corrections.

Fast and semi-permanent crown alternative with a proven longevity of up to 5 years

Properties

  • Quick and easy chairside technique
  • Optimum mechanical properties
  • Excellent fracture toughness and flexural strength
  • Excellent polishability
  • Simple processing
  • Long-lasting with excellent results
  • Time and cost savings for patients and clinicians
  • Reliable durability
  • Versatility of applications and uses for patients and clinicians

LuxaCrown allows for the simple, quick and cost-effective manufacture of long-lasting crowns in one appointment. Dentist can now offer patients a quick, reliable alternative to lab processed crowns. LuxaCrown offers the confidence and natural beauty at a less-costly option for your patients. A win-win for Dentists and their patients when permanant crowns are not a viable option due to budget or situation.

LuxaCrown is ideal for:

  • Challenging/difficult restorative situations
  • Implant cases
  • Cosmetic restorative cases
  • Pediatric cases
  • Healthy aging adult patients
  • Palliative patients
  • Affordable alternative for permanent restorations
  • Semi-permanent & fast alternative to lab-produced crowns.

Background
In-vitro studies into the relevant mechanical properties such as resistance to abrasion, fracture toughness and flexural strength have demonstrated the outstanding mechanical strength of the material.

Longevity estimated by standardized chewing and wear simulation combined with artificial aging. These results suggest survival rates up to five years. Long-term studies are currently underway.

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