Products
Paint Surface Self-cleaning Agent

Paint Surface Self-cleaning Agent

This product features a superhydrophobic self-cleaning technology specifically designed for painted surfaces, which can be achieved through spraying or roller coating processes. Not only does it not corrode the painted surface, but it also forms a physical protective layer, extending the lifespan of the paint.

Core Functions

 

Physical Protection and Anti-Aging

Micro-Nano Structural Layer: Constructed on painted surfaces, it mimics lotus leaf structures with micron-scale protrusions and nano-scale hairs, forming a dense physical barrier to block UV radiation, acid rain, salt spray, and other erosions.

Delayed Paint Fading and Aging: Laboratory data shows a 60% reduction in fading speed for outdoor painted walls, effectively extending the service life of paint coatings.

Superhydrophobic Self-Cleaning, Reducing Maintenance Costs

Contact Angle >150°: Water droplets roll off in a spherical shape, carrying away dust and oil stains, enhancing surface cleanliness through rainwater rinsing.

Zero-Maintenance Exterior Walls: Reduces manual cleaning frequency by 70%, saving water resources and minimizing financial and material waste.

Long-Term Anti-Fouling, Preserving Aesthetics

Physical Anti-Fouling Mechanism: Achieves anti-fouling through structural regulation without chemical additives, maintaining stable performance over time. After 5,000 hours of accelerated aging tests, it retains anti-fouling effectiveness.

 

Application Scenarios: Comprehensive Coverage

 

product-600-400

 

Building Walls

 

Universal for Interior/Exterior Walls: Suitable for residential, commercial, and public building paint coatings, enhancing aesthetics and durability.

Green Building Support: Zero VOC emissions during application, promoting sustainable building development.

Industrial Coatings

Corrosion Resistance Enhancement: Replaces traditional heavy-metal-containing coatings by blocking salt spray and acid rain with a physical barrier, extending the lifespan of steel structures and machinery.

Resource Conservation: Reduces the frequency of paint repairs, lowering steel consumption and waste emissions.

Public Facilities

Cost Reduction: Superhydrophobic surfaces resist dust adhesion, reducing municipal cleaning costs.

Enhanced Weather Resistance: Maintains performance stability in -30°C to 70°C temperature ranges, suitable for most building environments.

 

Environmental and Safety Advantages

 

Environmentally Friendly

Zero-Pollution Application: No chemical additives; no VOC emissions during spraying or rolling, preventing air and water pollution.

Biodegradable Materials: Utilizes bio-based nanoparticles that degrade naturally after disposal.

Human Safety

Non-Irritating to Skin: Passes SGS skin irritation tests; no sensitization or corrosion risks.

Non-Toxic and Harmless: Complies with RoHS, REACH, and other international environmental certifications, posing no long-term health hazards.

Energy Efficiency

Convenient Application: Simple spraying or rolling process with room-temperature curing.

Low Maintenance Costs: Reduces cleaning frequency and repair needs, lowering lifecycle costs.

 

Future Prospects

 

Technological Evolution: Integrating smart materials to develop self-healing coatings for enhanced environmental adaptability.

Market Expansion: Extending from construction to automotive, aerospace, machinery, and other high-end manufacturing sectors, driving industrial upgrading.

This Paint Surface Self-cleaning Agent, centered on nanotechnology, revolutionizes traditional cleaning and maintenance methods, offering a safe, efficient, and eco-friendly solution for painted surfaces. It stands as a pivotal technology for future green building and industrial development.

Hot Tags: paint surface self-cleaning agent, China paint surface self-cleaning agent manufacturers, suppliers, factory, Clean Snow Cover off PV Panel, Salt Fog on PV Panel, Self cleaning System, Dust Monitor, air purify for baby, Self cleaning and Anti adhesion Agent

Send Inquiry