Automobiles are the most common means of transportation in our daily lives. Automotive electronic devices are composed of complex and sophisticated internal circuit boards and numerous micro-precision components, yet they operate in extremely complex environments. These electronic devices are prone to environmental corrosion caused by liquid ingress, humidity, high salinity, condensed water, and other factors, which can affect driving safety and shorten their service life.
With its ultra-thin and dense protective properties, nano-coatings can form a micron-level isolation layer in the automotive electronics field. This layer effectively blocks corrosive media such as moisture and salt spray, enhancing the stability and service life of precision components (including circuit boards and sensors) under complex operating conditions like high temperature and high humidity.
Transparent, Hardened & Wear-Resistant
Product Performance
Test Items
| Test Results | Remarks
|
| Wear Resistance (Glass Substrate) | No breakthrough of the coating | Taber Abrasion Tester, 1000 cycles under 5N load |
| Hardness Test | PC substrate can be hardened up to HB grade | Pencil Hardness Tester |
| Water Resistance | No blistering, peeling, wrinkling, swelling or other defects on the coating film | Immersed in deionized water at 40℃ for 240 hours |
| Light Aging Resistance | No discoloration or peeling; 100% coating residue retention | Xenon Lamp Aging Test |
Product Features
Dense coating film without voids or defects
Extremely high surface hardness
Excellent corrosion resistance and scratch resistance
Good film-substrate adhesion
No impact on the color of exterior component substrates
Application

High-Voltage Resistant Insulation
| Test Items |
|
|
Water Contact Angle (WCA)
| 70-80° | Water Contact Angle Meter
|
| 300-500V/µm |
|
| >48h (120V Acid Sweat ) |
|
Product Features
Application
Charging pile power supplies, power conversion equipment, electric motors, etc.
