9H Ceramic Coating
9H Ceramic Coating
9H Ceramic Nanocoating is a glass coating based on silanes. The coating can be applied as either a thick layer of approximately 10 microns on to surfaces which are not highly reflective or the coating can be applied and then buffed thus reducing the coating thickness to approximately 2 microns. This latter procedure is normally used in the auto sector. The coating is neither paint, wax nor a sealant, and cannot flake off or be washed off. The coating forms a durable (“covalent”) bond with the paint, and it can only be removed by strong abrasive forces. The coating cannot be dissolved by standard chemicals which are commonly used in the auto sector.
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LIFE:
Interior : 20 Years Warranty
Exterior : 5 Years Warranty
9H Ceramic Nanocoating can be applied to almost any (car) paints. To attain optimum performance, it is essential that the target surface is to perfectly clean; it must be completely free from waxes, silicone coatings, etc., otherwise the coating will not be able to bond to the surface. We use the familiar “pencil hardness” to describe the hardness of a layer. The measuring range is between 6B (smoothest) and 9H (hardest).
- Non-ferrous metals.
- Windscreens.
- Door handles.
- Rims.
- Head lights.
- Powder-coated surfaces.
- Windowpanes.
- Plastics
- Clear, colorless liquid based on silanes. Contains solvents.
- Extremely abrasion-resistant, with very high adhesive properties, and high impact strength
- Hydrophobic, oleophobic and stain-resistant
- Suitable for spray or manual application.
- After polishing the surface will become “ultra shiny”
- “Easy-to-clean” effect surfaces stay cleaner for longer, and all cleaning becomes very easy, thus
extending the cleaning intervals and reducing cleaning and maintenance costs. - Highly effective for 5 years on exterior surfaces & 20 years on interior surfaces.
- Application with electric polishing machine possible Material consumption for an entire car, approx.
50ml
This highly advanced coating has been specially developed for the demanding requirements of the auto,
aviation, marine, military and trans- port sectors. It is extremely resistant to corrosion, abrasion, and
temperatures, and can be applied to metal, plastic, powder-coated, and painted surfaces. Curing can occur
at ambient temperature but the additional application of heat is also advantageous. The coating forms an
extremely strong bond with the surface, and creates an abrasion-resistant finish with very high resistance to
solvents.
Enhance Assets applying Nanotechnology
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