glass-wool_cover.png

LOW VOC EMISSION MINERAL WOOL INSULATION

Technical Readiness Level:

trl 6

 

The conventional insulation in aircrafts consists of blankets made from layers of glass wool wrapped in foil that keeps the glass wool from being adversely affected by the environment. In addition to glass fibres, glass wool products typically contain an organic binder that provides strength and mechanical integrity required for their end use application.lGlass wool insulation binders are traditionally phenol-formaldehyde based resins. Phenol-formaldehyde binders used in the manufacture of mineral wool insulation are increasingly being scrutinized for the formaldehyde released during their manufacture and service lifetime.SG Isover has developped a new generation of mineral wools emitting low VOC and preserving indoor air quality while providing high performance thermal and acoustic insulation solutions for building applications that relies on a biobased formaldehyde free binder.

 

quality_glass-wool.png

Key features: 

  • Formaldehyde free binder
  • High acoustic and thermal performances
  • Low embodied carbon
  • Combustion free
  • Recyclability

 

fuslage and p insulation-19.jpg
Located in the fuselage and primary insulation.

Our partners

LOGO ISOVER

Want to collaborate?

Aerospace Innovation:

[email protected]

other technologies for a better air quality

air-quality_A90-material_cover.png

OMNISEAL® A90 MATERIAL FOR BLEED AIR COUPLING SEAL

air-quality_ceramic-air-filter_cover.png

ceramic air filter

air-quality_staple-fiber_cover.png

TEXTILE CHOPPED STRANDS & STAPLE FIBRES FOR FILTRATION

silicone-gasketing-foams_cover.png

SILICONE GASKETING FOAMS

3D-knitted-airducts_cover

3D knitted composite for airduct

Other CHALLENGES in the interior cabin 

thermal-comfort_subsystem_cover.png

thermal comfort

acoustic-comfort_subsystem_cover.png

acoustic comfort

digital-comfort_subsystem_cover.png

connectivity comfort

visual-comfort_subsystem_cover.png

visual comfort

fire-resistance_subsystem_cover (3).png

fire resistance

weight-optimization_subsystem_cover.png

Weight optimization