Special products

FOAMGLAS® PERINSUL  | FOAMGLAS® TAPERED

 
 
 
 

FOAMGLAS® PERINSUL

 
 

 

 

FOAMGLAS® PERINSUL HL is an innovative product developed by PITTSBURGH CORNING for the UK market to reduce thermal bridges at junctions within wall constructions. FOAMGLAS® PERINSUL HL blocks, manufactured from high density FOAMGLAS®, are designed to form an effective insulated joint between vertical wall insulation and horizontal floor or roof insulation. Possessing all the thermal properties for which FOAMGLAS® is well proven, together with an exceptionally high unit compressive strength of 2.9N/mm2 at breakpoint when capped with mortar, cold bridging is significantly reduced and structural integrity maintained. This product is tested to BS  EN772-1. and EN826, Annexe A

 

 

For further information and details on Perinsul please contact us on mailto:technical(a)foamglas.co.uk

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FOAMGLAS® TAPERED Roof System

 
 



 

 

FOAMGLAS® TAPERED Roof System is a cut to falls insulation system with for flat roofs and floors. It simply works brilliantly. Depending on the needs, the insulation is designed with a specific slope.  Available in various falls , water simply runs off quickly and completely.

 

The roof  can be engineered to be lighter and safer without the problems associated with standing water. Often the need for a separate screed to falls is eliminated reducing materials and labour.

 

Benefits:

  • No vapour barrier, no mechanical fastening
  • Great functional safety with long-term experience
  • High compressive strength
  • High dimensional stability
  • Provides additonal bracing to profiled sectional sheeting structures
  • Resistance to wind suction
  • Safety through non-combustibility
  • System designs are provided free of charge


  Dimension        Standard fall           Thickness                      Types of slabs

 60 x 45 cm 
 1,1; 1,7 or 2,2 %   

Mono block 4 to 18 cm   

Over 19 cm pre-glued

in factory

  FOAMGLAS® T4+

  FOAMGLAS® S3

  FOAMGLAS® F


   

 

Detailed information... (PDF 495 KB)

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