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Heat Reflective Coating on Metal Substrates

总结
Dark-coloured coatings with strong near infrared (NIR) reflectance and adhesion strength to metal substrate, like aluminium, have been developed. The coatings show dark or black colours as they absorb most of the visible light. However, they display strong reflectance in the NIR spectrum. In contrast, the common dark- or black-coloured coatings not only absorb visible light, but also radiation in the IR range.This coating technology that has been developed can be used on aluminium or other metal substrates, of various buildings and vehicles, to reflect IR radiation. It exhibits strong adhesion to metal substrates, such as (but not limited to) aluminium, even without any surface pre-treatment. Besides, it also effectively reflects NIR light, thus reducing the solar heat load and increasing energy efficiency. This coating technology is therefore expected to have a wide range of applications in energy saving fields such as on window frames of buildings, car and ship coatings.
技术优势
Reduction in heat entry into buildingsReduction in energy demand from air-conditioning, especially in the tropical regionReduction in air pollution due to low energy consumptionLonger life-cycle of coated substrate due to reduced polymer degradationSelection of dark colours
技术应用
This technology is expected to be applicable in the following industries:Construction: For new and existing window frames in the tropical regionAutomotive and logistics: For vehicle bodies (cars, trucks, etc.)Marine & offshore: For oil tanks, marine (boats and ships)
详细技术说明
This coating technology is expected to have the following features:Ability to absorb most of the visible light and show dark or black coloursUniform chromaticityAbility to strongly reflect light in the range of near infrared (NIR) spectrumStrong adhesive strength to metal substrates, such as (but not limited to) aluminium, even without surface pre-treatmentVersatile methods of application, such as spray coating, brush coating, or powder coatingEffective reduction of heat build-up within an enclosed spaceReduce the energy consumption by as much as 45% (in comparison with traditional coatings)Possible replacement of thermal break in window frames
申请日期
17-Aug-2015
ID号码
TO17066
国家/地区
新加坡

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