High Reflectivity Powder Series
High Reflectivity Powder Series is a temperature-regulating, infrared-reflective powder coating designed to reduce heat absorption on coated surfaces. By reflecting infrared radiation, it prevents excessive heating of the substrate, helping you maintain a more constant internal temperature for sensitive components. This makes it ideal for equipment and structures exposed to intense sunlight or harsh outdoor conditions
Application
You can apply High Reflectivity Powder Series in scenarios where thermal management and durability are critical:
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Outdoor electrical enclosures and control panels
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Machinery and equipment housings exposed to direct sunlight
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Vehicle body panels and rooftop structures in high-temperature environments
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Military or industrial equipment requiring infrared camouflage or heat reduction
Parameters
| Item | Description |
|---|---|
| Coating Type | Infrared-reflective, temperature-regulating powder coating |
| Surface Effect | High reflectivity, smooth or matte finish depending on product variant |
| Application Method | High-voltage electrostatic spraying 60–80 KV |
| Curing | 180–200 °C for 10–15 minutes depending on substrate |
| Recommended Film Thickness | 60–150 µm |
| Environmental Compliance | Free of heavy metals, RoHS-compliant |
| Substrate Compatibility | Aluminum, steel, and other metals suitable for powder coating |
Features
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You achievetemperature reductionon coated surfaces under direct sunlight
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You benefit frominfrared reflection, helping maintain stable internal temperatures for sensitive components
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You gainexcellent outdoor durabilitywith resistance to UV radiation and weathering
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You can apply it tovarious metal substrates, including aluminum and steel
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You maintainlong-term performancewithout degradation of reflective properties
Case
We helped a solar panel enclosure manufacturer reduce internal temperatures. By applying High Reflectivity Powder Series to exterior housings, you lowered surface temperatures by up to 15 °C under peak sunlight exposure. This maintained optimal internal conditions for electronics, improved product lifespan, and reduced cooling energy requirements. The coating retained its reflectivity and gloss after 12 months of outdoor exposure, ensuring consistent performance.
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