PIR Insulation Board 90 x 2400 x 1200mm (2.88m²)

SKU: 100778
Est. £27.15 - £32.01  + VAT
This General Purpose Insulation Board, sized 90mm x 2400mm x 1200mm, is a versatile PIR insulation ideal for various applications such as roofs, walls, and floors. Easily cut and installed, it's lightweight and offers superb thermal performance, with additional benefits from a multi-layer aluminium foil coating. It excels in compressive strength and is eco-friendly, accredited with BBA, marked CE, and ISO 9001 & ISO 14001 approved. It has a Class 1 fire performance rating & is resistant to moisture and thermal effects.

Product Description

This General Purpose Insulation Board, measuring 90mm x 2400mm x 1200mm, is a top-notch PIR insulation board suitable for a multitude of applications. Appreciated for its lightweight design, this user-friendly board can be easily cut and installed. Perfect for pitched roofs, framed walls, and floors, this insulation board offers excellent thermal performance with a rating of 0.022 W/mK. Its surface is coated with a low emissivity multi-layer aluminium foil for added performance. Showing impressive compressive strength that surpasses 140kPa at yield, this insulation board is manufactured using an environmentally friendly blowing agent with zero ODP and low GWP. Accredited with BBA certificate 02/3905, marked with CE, and approved under ISO 9001 & ISO 14001, it ensures quality and environmental compliance. The fire performance rating of surface spread of flame is Class 1 (BS 476, Part 7), Euroclass F (BS EN 13501-1). Furthermore, this board is resistant to both moisture and thermal effects. This insulation board is a versatile solution for many applications.

Product Specification

BrandsKingspan, Celotex, Rockwool, Ecotherm, Xtratherm, Quinn
MaterialPIR
Width (mm)1200
Length (mm)2400
Thickness (mm)90
Dimensions (metric)90mm x 2400mm x 1200mm
ApplicationFloors, pitched roofs & framed wall applications
Coverage (area m²)2.88
Thermal Resistance R Value (m²K/W)4.05
Thermal Conductivity Internal (W/mK)0.022