Sep. 01, 2025
Heating, Ventilating and Air Conditioning (HVAC)
The foam is cut to accurate tolerances on computer controlled cutting equipment. Parts available include traditional half sections, slotted slab, foil faced phenolic foam laminate ductboard, radius and bevelled lags, bends, flange box covers, valve box covers, etc. Materials are generally supplied with a vapour barrier facing. High density foam is also available for structural applications such as pipe and duct supports.
Building and Construction
Phenolic foam is used in many building applications, typically continuously laminated phenolic board is used in roofing, cavity board, external wall board, plasterboard dry lining systems, wall insulation, floor insulation and as a sarking board. The superior fire performance of phenolic foam is being recognised and this is leading to increased market share in these areas.
Factory Engineered Composite Panels
Composite panels comprise of a high density structural phenolic foam core with steel facings both sides and an appropriate jointing system. These panels are used in a range of applications including food processing factories, cold stores, semi conductor clean rooms and hospitals. These panels are structurally sound and fit for purpose for use in walk-on ceilings. The excellent fire performance provided by the phenolic foam core gives both good insulation and integrity performance in the 3m furnace fire resistance test.
Process / Petrochemical
Phenolic foam is used in process/petrochemical applications for the insulation of pipework, tanks, vessels etc.
It is typically used in masonry cavity walls, timber or steel frame walls, pitched and flat roof applications, as well as warm roofs. It can also be used with plasterboard laminates. Phenolic insulation has excellent insulation values and offers a versatile and space efficient solution.
Link to Shengquan
Cavity walls
Timber or steel frame walls
Pitched and flat roof applications as well as warm roofs
Low thermal conductivity
Lightweight
Space efficiency
Because of its superior thermal performance PIR insulation offers optimal insulation value meaning a thinner layer will achieve the same insulation properties. This has other benefits, as using thicker insulation will mean a larger building footprint or smaller internal dimensions for a property.
The diagram shows the typical thicknesses of different wall insulation materials needed to achieve an R value of 4.5.
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