Advanced Solar Protection for Marine Vessels:
Introducing Naviglare iR Supreme Solar Film 

Nano-Ceramic Matrix:

Precision-Engineered Protection

At the core of the Naviglare iR Supreme Film is a nano-ceramic matrix, meticulously engineered using advanced nanotechnology. This matrix incorporates titanium dioxide (TiO₂) and aluminum oxide (Al₂O₃) nanoparticles, which are highly effective at absorbing and reflecting solar energy. Titanium dioxide in its nano form exhibits excellent photocatalytic properties, which enhance its ability to block Up to 99% of infrared radiation (700-2500 nm) and 99.9% of harmful ultraviolet (UV) radiation (100-400 nm), effectively reducing solar heat gain while maintaining visible light transmission (VLT). This ensures the cabin remains cool and comfortable without sacrificing the clarity of views.

Multi-Layer Thin Film Deposition

Solar Energy Rejection

The film is built using multi-layer thin film deposition techniques, a process that allows for precise control of material thickness and layering. Indium tin oxide (ITO) and zinc oxide (ZnO) are key components used in the film’s construction.
 
• Indium tin oxide (ITO) is a transparent conducting material known for its ability to reflect infrared (IR) radiation while allowing visible light to pass through. This selective rejection of IR wavelengths significantly reduces the heat load inside the vessel, enhancing passenger comfort and reducing reliance on air conditioning systems.
• Zinc oxide (ZnO) is a wide-bandgap semiconductor with high UV-blocking capabilities, ensuring the film provides protection against harmful solar radiation. Its inclusion further enhances the film’s ability to reject solar heat gain, measured through the Solar Heat Gain Coefficient (SHGC). A lower SHGC translates to less solar heat entering the vessel, ensuring a cooler interior.

Hard Coat Durability

Engineered for Extreme Conditions

The iR Supreme Solar Film features a patent-pending hard coat layer composed of siloxane-based polymers, specifically designed to withstand the rigors of marine environments. Siloxanes, part of the broader family of polysiloxanes, are known for their thermal stability and elasticity, making them highly resistant to abrasion, UV degradation, and saltwater corrosion.

This durable topcoat ensures the film maintains its performance even after prolonged exposure to harsh sunlight, fluctuating temperatures, and physical wear. The hard coat’s superior durability also protects the underlying layers from degradation, ensuring the film’s optical clarity and heat rejection properties remain intact over time.

Window Film For Marine, Vessel, Boat - Technical Data
Solar Film for Marine Solar Protection

Permanent

Performance and Stability

Naviglare iR Supreme Solar Film is designed for thermo-mechanical stability, which means it retains its structural integrity and performance under extreme temperature fluctuations, ranging from freezing cold to intense heat. The film’s construction, including the aluminum oxide (Al₂O₃) nanoparticles, provides a high degree of thermal resistance, ensuring no delamination or material breakdown over time. This makes the film a reliable, long-term solution for marine vessels and residential installations requiring consistent clarity and protection.

Safety and

Environmental Assurance

The materials used in the iR Supreme Solar Film, including TiO₂, ZnO, and ITO, are non-toxic and inert. These materials are commonly used in products like sunscreens, paints, and coatings due to their safety and stability. Once installed, the film does not release harmful gases or volatile organic compounds (VOCs), making it a safe option for marine, residential, and commercial environments. Additionally, the film is designed to be environmentally friendly, with no risk of degradation under UV exposure.

Insights

Unmatched Performance for the Most Demanding Conditions

Naviglare’s iR Supreme Nano Ceramic Solar Film offers an unparalleled combination of heat protection, UV blocking, and crystal-clear visibility. Its sophisticated multi-layer construction, reinforced by a durable hard coat, ensures long-lasting performance in the harshest environments. Designed for permanent performance stability, this film is ideal for marine vessels and residential applications where consistent optical clarity and protection from solar heat gain are paramount.

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