Brief: Discover the 1070 Alloy Material Mirror Finish Aluminum Coil, perfect for lighting fixtures. This high-reflectivity aluminum coil offers exceptional brightness, durability, and design flexibility. Available in gold and silver finishes, it enhances both aesthetics and performance in lighting applications.
Related Product Features:
Mirror-finish aluminum coil with high reflectivity for optimal lighting performance.
Available in gold and silver colors for elegant and contemporary lighting designs.
Made from 1050/1070/3003/5052 alloys for maximum brightness and durability.
Features PE, SMP, or PVDF coatings with customizable front and back coating thicknesses.
Ideal for LED reflectors, street light housings, and decorative lighting due to superior workability.
Resists yellowing and oxidation, ensuring long-lasting performance.
Enhances heat dissipation, extending the lifespan of LED lighting fixtures.
Manufactured with advanced technology for precise thickness and high-quality finishes.
Interrogazioni:
What are the benefits of using mirror-finish aluminum coils in lighting fixtures?
Mirror-finish aluminum coils provide high light reflectivity, efficient heat dissipation, and superior workability, making them ideal for enhancing brightness and durability in lighting applications.
Which alloy materials are available for the mirror-finish aluminum coils?
The coils are available in 1050, 1070, 3003, and 5052 alloys, offering a balance of brightness and durability for various lighting needs.
How does the coating on the aluminum coils improve performance?
The PE, SMP, or PVDF coatings provide protection against environmental factors, resist yellowing and oxidation, and ensure long-lasting reflectivity and durability.
What thickness is recommended for LED reflectors?
For LED reflectors, a thickness of 0.3-0.6mm is recommended as it offers lightweight properties and easy bending for complex designs.
Can the aluminum coils be customized in color?
Yes, the coils are available in gold, silver, bronze, and custom colors to match specific design requirements and aesthetic preferences.