Being a valued customer of US Dental Depot Inc has always been an unparalleled experience. It is our intention to build strong relationships with our customers, creating complete confidence in both our knowledge and 24 hour support network. We are dealers of over 65 leading dental manufacturers worldwide. DO NOT quench in water.Īt US Dental Depot Inc, we are committed to offering professional service and providing optional brands of high quality products at competitive prices. Cooling: Allow casting ring to cool to room temperature. The casting temperature of automatic casting equipment should be set for 2500 ?F (1370 ?C) with a five seconds heat soak.Ĥ. Set the arm speed to 400-450 rpm & set the power to high and be sure that the alloy is pulsating and slumping. Induction or Electrical Casting: When using induction casting machine, pre-heat the crucible. (6 mm) of investment from the top of the pattern to the top of the investment.ģ. Spruing (Single Crowns): Use direct sprues, 8-10 gauge, (3.3-2.6 mm diameter) and 1/2 in. Lingual eyelet rings help support castings during firing.Ģ. The wax pattern design should have lingual collars and no sharp corners. Modeling : Maintain a minimum wax thickness of 0.3 to 0.4 mm. With a CTE 13,6 to 14,0, is compatible with VITA porcelainsġ. Its advanced metallurgical properties, including a light oxide, ensure consistent, faithful wax reproduction with sharp margins. Has a superb clinical history and works perfectly as a high-strength, economical alloy. Is the most recognized non-precious alloy in the world, and continues to be the top-seller at Dental Alloy Products. Ti showed no statistically significant differences.ĭental implants Galvanic corrosion Noble alloys Noble bond® Suprastructure Titanium.With a CTE of 14,1 to 14,5, is compatible with almost all porcelains in the market - Ceramco - Ceramco 2- Noritake - Ceratec - Vision. The effects of electrogalvanic corrosion on each of the materials used when they were in contact with c.p. The Sv showed no statistically significant differences between the three alloys. The Sp showed no statistically significant differences between the three alloys. Ti implants with the three studied alloys. The analysis of the Sa at the level of the implant neck, abutment neck and implant body, showed no statistically significant differences on combining c.p. The metric parameters were compared by statistical analysis. The samples were immersed in artificial saliva for 3 months, after which the procedure was repeated. Sv: Maximum height of valleys.), were measured at three different areas: abutment neck, implant neck and implant body. Thus, three metric parameters ( Sa: Arithmetical mean height of the surface. In order to observe the corrosion effects, the surface topography was imaged using a confocal microscope. They were divided into three groups, namely: Control group: five c.p Titanium abutments (B&W ®), Test group 1: five Noble Bond ® ( Argen ® ) cast abutments and, Test group 2: five Argelite 76sf + ® ( Argen ® ) abutments. Also, the electrolytic corrosion effects over three types of materials used on prosthetic suprastructures that were coupled with titanium implants were analysed: Noble Bond ® ( Argen ® ), Argelite 76sf + ® ( Argen ® ), and commercially pure titanium.ġ5 samples were studied, consisting in 1 abutment and one c.p. To determine whether the Noble Bond ® Argen ® alloy was electrochemically suitable for the manufacturing of prosthetic superstructures over commercially pure titanium (c.p.
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