3m Espe Relyx Veneer Cement
₹3,540.00 Original price was: ₹3,540.00.₹2,480.00Current price is: ₹2,480.00.
RelyX Veneer cement is a permanent, light-cure only resin luting material. It must be polymerized by exposure to visible light in the 400-500 nm wavelength range. Most ceramic and composite veneers are thin enough and translucent enough to allow for adequate light penetration through the veneer to completely cure the cement. RelyX veneer cement is very efficient in its light-curing ability. This allows for a simplified bonding technique and also provides for excellent color stability of the cured cement. This feature is vitally important for highly esthetic veneer restorations. • Cementing porcelain, composite and ceramic veneer restorations. Curing efficiency is important for a veneer cement because curing the cement requires light-curing through the veneer. The light intensity that reaches the cement can be greatly compromised depending on the thickness and shade of the veneer and also depending on the actual light output of the curing light. To obtain the desired physical properties upon curing, it is recommended that the minimum light output for a curing light is 400 mW/cm2 in the wavelength range of 400-500nm. The light-cure efficiency for various cement systems was measured using the translucent, clear, neutral or transparent shades. Two curing lights were used for the study, a lower power (451 mW/cm2) 3M™ Visilux™ II Curing Light and a high power (>2,000 mW/cm2) DMD™ Apollo™ 95E. The cements were cured at a 1mm thickness directly under the curing light and after filtering through simulated porcelain veneers (1.00 mm thick, Vintage Porcelain Body A2). Cure efficiency was determined by varying the exposure time and then sampling the Barcol hardness of a cement slab. COMPOSITION:
• RelyX Veneer cement is a light-cure, methacrylate resin-based luting material.
• RelyX Veneer cement is a single component, light-cure material packaged in a single syringe.
• The resin is composed of bisphenol-A-diglycidylether dimethacrylate (BisGMA) and triethylene glycol dimethacrylate (TEGDMA) polymer. Zirconia/silica and fumed silica fillers are used to impart radiopacity, wear resistance and physical strength.
• The filler loading is approximately 66% by weight. The average particle size for the filler is approximately 0.6 mm.
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