Nanocoating Technology can be easily called as one of the most vital future technologies. Nanocoatings are super-fine layers or chemical structures that are built upon surfaces by varied methods. It is the result of an application where unique hybrid structures build a consistent network of molecules on a surface. It imparts hydrophobic and oleophobic properties to the applied surface thereby increasing corrosion resistance and enhancing conductive properties.
Nanocoatings can be used in varied sectors of a widespread industry. It can be applied on a wide array of materials such as metals, glass, ceramics and polymers to extend their overall lifespan and to make them deterioration-resistant. In technical terms, nanocoating is measured on the nanoscale as it focuses on research and creation of very fine structures and elements. A nanometer is a millionth of a millimeter. You can take idea about its thickness in the context that human hair is five times thicker than a nanometer.
Nanocoatings can be used in varied sectors of a widespread industry. It can be applied on a wide array of materials such as metals, glass, ceramics and polymers to extend their overall lifespan and to make them deterioration-resistant. In technical terms, nanocoating is measured on the nanoscale as it focuses on research and creation of very fine structures and elements. A nanometer is a millionth of a millimeter. You can take idea about its thickness in the context that human hair is five times thicker than a nanometer.
The principle of Naocoating Technology allows man to exploit the molecular structure of materials as well as make new innovations in the field of coating solutions. The demand of high-performance ceramic coating has increased to an extent that numerous products are being developed in laboratories all over the globe with the help of this technology. At 1-100 micron thickness, nanocoatings do not make changes to the topography of a surface. Unlike paints, they should not be expected to fill in the gaps and smoothen out the surface. In addition, such a fine coating may not resist abrasion and wear effectively.
Latest advances in surface chemistry and coating technology have greatly improved the accessibility of nanocoatings to an extent where consumers now find it easy to apply nanocaoting products through conventional means. Nanocoatings are both hydrophobic and oleophobic which can be used in industrial and commercial sector. A high-performance, good-quality nanocoating can be applied via spray, dipping, and wiping. Unique structure and chemical composition prevent normal deterioration when applied to variety of surfaces. This translates to greater durability, extended life spam, enhanced utility and structural integrity. Due to the hydrophobicity and oleophobicity of Nano Coating Technology, the surface tends to self-clean itself and requires less effort in cleaning.
Latest advances in surface chemistry and coating technology have greatly improved the accessibility of nanocoatings to an extent where consumers now find it easy to apply nanocaoting products through conventional means. Nanocoatings are both hydrophobic and oleophobic which can be used in industrial and commercial sector. A high-performance, good-quality nanocoating can be applied via spray, dipping, and wiping. Unique structure and chemical composition prevent normal deterioration when applied to variety of surfaces. This translates to greater durability, extended life spam, enhanced utility and structural integrity. Due to the hydrophobicity and oleophobicity of Nano Coating Technology, the surface tends to self-clean itself and requires less effort in cleaning.