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Pacific Nanotech

SurfaGuard Metals

SurfaGuard Metals

Regular price $30.00 NZD
Regular price Sale price $30.00 NZD
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SurfaGuard Metals - Corrosion inhibitor / shop primer for ferrous metal surfaces such as carbon steel, cast iron and stainless steel prevents metal corrosion.

When the formulation is applied the modified surface of the metal is inactivated, slowing the corrosion rate up to 10 times

How It Works  

SurfaGuard Metals is a water-based, nanotechnology formulation that prevents metal corrosion. The combination of nano-particles and corrosion inhibitors creates an impermeable layer against humidity and oxygen. SurfaGuard Metals modifies chemically the metal surface to form a passive layer and the the corrosive agents cannot contact with the metal surface. The application of SurfaGuard Metals to stainless steel helps to preserve its “gloss” and shiny appearance. 

Applications

  • Inhibits corrosion and rust formation even in extreme environments (e.g. marine, high temperature)
  • Extends the lifetime of metals
  • Enhances adhesion with other coatings and cement
  • Corrosion rate is decreased up to 10 times and preserves gloss on shiny metallic surfaces
  • Superficial layers of rust are passivated creating a shell against corrosion
Benefits
  • Slows down rust formation
  • Extends the lifetime of the metal till installation
  • Application by dipping, brush or spraying
  • Water-based (Low VOC)
  • Cost-Effective

 How to Apply: Surface Application

  • Shake or stir the container before use. The application surface has to be clean and dry.
  • Prior to application clean the surface with a cleaner or solvent.
  • Apply SurfaGuard Metals by: a) immersing the metal for 3 - 10 minutes, or b) spraying 2 coats generously, or c) applying 2 coats by brush or roller.
  • Remove excess of the material after application and let the material dry and cure (up to 2 hours at ambient temperature).

  

Coverage

Estimated consumption rate 5-8 m²/L, strongly dependant on the application method.

Estimated coverage is 8-10 m2/L, strongly dependant on the properties of the surface applied. 

 

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