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Rigid polyurethane foam composite board
Rigid polyurethane foam composite board

Rigid polyurethane foam composite panels are made by bonding polyurethane insulation core material and cement-based interface reinforcement roll material together in a factory using a professional continuous production line, resulting in a board material

Product Specifications


Standard Size: 1200mm*600mm (Customizable)

Insulation Layer Thickness: 20mm-150mm

Product Features

Excellent thermal insulation performance with the thinnest insulation layer.


Rigid polyurethane foam has a low thermal conductivity (0.018-0.024 W/(m·K)), making it an ideal thermal insulation material. To achieve the same insulation effect, the insulation layer is thinner, resulting in minimal self-weight torque and significantly improved safety.

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Wide operating temperature range


Rigid polyurethane foam has an operating temperature range of -50°C to 150°C, and can withstand short-term use at temperatures up to 250°C without any damage. Its wide operating temperature range makes it suitable for both extremely cold and high-temperature regions.

Excellent fire resistance and flame retardant properties


Rigid polyurethane foam is a thermosetting insulation material that does not produce molten droplets when exposed to fire, but forms a carbonized coke layer on the surface, and has no flame propagation properties.

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Excellent Waterproofing Performance


Rigid polyurethane foam has a closed-cell structure with a closed-cell rate of over 95%, resulting in low water absorption and effectively preventing moisture penetration. It is considered an integrated waterproofing and insulation product.


Good Chemical Resistance


Rigid polyurethane foam exhibits good physicochemical stability and is not prone to physicochemical reactions with corrosive chemicals.

1. Before the experiment

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2. Add 4 drops of acetone solution to each plate.

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3. No reaction from PU

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4. XPS forms dents, EPS is punctured, and PU shows no reaction.

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System Showcase
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Construction process


The system adopts a "bonding + anchoring" fixing method, with bonding as the main method and anchoring as a supplementary method, providing double protection and ensuring high system safety.
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