Frequent questions

Why choose NANOPROTECH products?

Because they use cutting-edge nanotechnologies. The nanoparticles contained in NANOPROTECH’s formula allow the product to penetrate the material’s structure, filling microcracks and surface pores, forming a nanocoating that protects equipment much more durably and efficiently than other products. The nanoparticles contained in the aerosols are the most valuable component of the solutions, making NANOPROTECH a premium category among aerosols. To put it in perspective, an atom has a diameter of 0.1 nanometers, a nanometer is one billionth of a meter, a newspaper sheet is about 100,000 nanometers thick, and a human hair is approximately between 80,000 and 100,000 nanometers wide. Using this technology, NANOPROTECH has manufactured unique electrical insulation and anticorrosion lubricant products.

Can NANOPROTECH be applied to equipment connected to electricity?

DO NOT APPLY NANOPROTECH to equipment connected to electricity, as the aerosol contains flammable propellant gas, and interaction with an electrical contact could lead to an explosion. APPLY the product to equipment that is without power, following all applicable safety standards. NANOPROTECH becomes non-flammable 15 minutes after application.

How long does NANOPROTECH protection last?

Depending on the stress to which the surface is subjected and atmospheric conditions, on average, the protection lasts between 1 and 3 years.

Does NANOPROTECH have lubricating properties?

NANOPROTECH is an ideal lubricant for moving parts and mechanisms, while minimizing mechanical friction.

Is NANOPROTECH resistant to seawater and chemicals?

Nanoparticles are much smaller than water molecules, so they penetrate deeply into the surface being treated, protecting the material for long periods from the effects of seawater corrosion, acids, water, and abrasive chemicals. NANOPROTECH protection can be enhanced and prolonged with repeated applications of the product. The reapplication times will be indicated by visual factors such as discoloration on metals (corrosion, oxidation, sulfation).

Why is the product labeled as "extremely flammable"?

NANOPROTECH products are labeled as “extremely flammable” because they are sold in aerosol cans that contain propane/butane gas as a propellant. NANOPROTECH becomes non-flammable 15 minutes after application.

Does NANOPROTECH comply with the RoHS directive (Restriction of Hazardous Substances Directive)?

Yes, NANOPROTECH products comply with all RoHS standards.

Can NANOPROTECH damage any type of material?

No, it is completely safe and has no harmful effects. It does not damage metals, plastics, rubber, glass, paint, ceramics, or electrical components.

How can you explain the contradictory characteristics of the NANOPROTECH protective coating?

NANOPROTECH improves the insulation of electrical devices while maintaining electrical conductivity.

The NANOPROTECH coating has dielectric properties that increase insulation resistance and protect against current leaks. NANOPROTECH products displace 100% of surface moisture and form an invisible elastic layer that does not harden over time. After application, impurities on the surface, rust, and dust are removed, and moisture is displaced, potentially restoring the electrical conductivity of parts damaged by moisture.

Does NANOPROTECH maintain electrical conductivity underwater?

Yes, NANOPROTECH ensures electrical conductivity even underwater in extreme cases, preventing typical short circuits and maintaining equipment functionality. NANOPROTECH DOES NOT GUARANTEE LONG-TERM OPERATION UNDERWATER AS A COMMON APPLICATION OF THE PRODUCT.

What should be the surface temperature during the application of NANOPROTECH?

During the application of NANOPROTECH, the surface temperature should not be below -20°C (at lower surface temperatures, the product will distribute inefficiently) and should not exceed +35°C.

Within what temperature range do NANOPROTECH products operate after application?

NANOPROTECH products maintain their unique properties in the temperature range of -80°C to +140°C. At higher temperatures, the product begins to evaporate.

Can NANOPROTECH be applied to electrical contacts that operate at high voltages?

NANOPROTECH can be applied even when voltages reach up to 100,000V, providing complete protection against corrosion and oxidation.

Does NANOPROTECH protect metals, electrical equipment, and printed circuit boards from the effects of hydrogen sulfide (H2S)?

Yes, it does.

Can NANOPROTECH be applied to a wet and dirty surface?

The use of nanotechnologies in our products eliminates the need for prior surface treatment. Due to high capillary action and low surface tension, the product will quickly penetrate moisture and dirt, forming a protective layer. However, the best effect is achieved on a clean surface.

Can NANOPROTECH remove dust and dirt?

Yes, NANOPROTECH prevents dust from settling on the surface and cleans it.

Should the NANOPROTECH layer be removed before painting the surface?

Yes, because the addition of high-quality oils will not allow the paint layer to dry.

How to apply NANOPROTECH on mobile phones and other electronic devices?

To apply NANOPROTECH on mobile phones and other electronic devices, it is necessary to disassemble them first. It is recommended to have a specialist disassemble them, apply NANOPROTECH, and then reassemble the electronic devices.

When applying NANOPROTECH to electronic devices (such as mobile phones, computers, radios, TVs, audio and video equipment, etc.) to protect against moisture, oxidation, and short circuits, special care should be taken NOT to apply it to LCD monitors, mobile phone screens, speakers, optics of cameras and recording devices.

How is it possible that electrical devices treated with NANOPROTECH Electric or NANOPROTECH Super Insulation continue to work underwater?

After applying NANOPROTECH, a protective layer is formed on the treated surface. Current always chooses the path of least resistance, and since the insulation resistance of our product is very high, there is no leakage current in the water.