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True Pore Technology
Innovative technology for aeration of construction materials
for insulation purposes and
reduction of your carbon dioxide footprint

Cast at site

Floor Subfilling

USLPore® is an ultra-lightweight porous concrete material with a density of only 200-300 kg/m³ for floor subfilling.

  • Fireproofed construction material
  • Fully recyclable (ordinary construction waste)
  • Time and personnel resource-saving application and installation 
  • Lighter and better insulation than competitors (200 to 300 kg/m³ dry density)
  • Early walk on stability
  • Lower cement quantity and carbon dioxid footprint

USLPore® can be poured as a liquid insulation at site and is hardening within few hours only. Due to its high stability at lower densities it´s granting a way better insulation effect compared to competitor products. 

  • Fast construction process
  • Excellent insulation effect
  • Eearly walk-on stability
  • Fireproofed construction material

Roof Insulation

Roof Insulation

USLPore® can be poured as a liquid insulation at site and is hardening within few hours only. Due to its high stability at lower densities it´s granting a way better insulation effect compared to competitor products. 

  • Fast construction process
  • Excellent insulation effect
  • Eearly walk-on stability
  • Fireproofed construction material

Insulation Floor Slab

USLPore® can be used as a foam concrete insulation layer for building basements. Produced at site it is substituting extruded polystyrene (XPS) or expanded polystyrene (EPS). It´s lighter than competitor products and can be applied thinner.

  • Lighter than competitor products (only 150 to 300 kg/m³)
  • Fireproofed construction material
  • Sustainable
  • Cost and time saving construction method
  • Substitution for extruded polystyrene (XPS) or expanded polystyrene (EPS)

USLPore® is an ideal and costs effective construction matrial to fill unwanted voids or stabilize areas after landslides

  • No transportation, on-site production
  • Reduction of carbon dioxide footprint
  • Alternative for foam glass or aerated clay
  • Void filling ability, adjustable viscosity due to various additives
  • Fireproofed construction material
  • Fully recyclable 

Geofill

Geofill

USLPore® is an ideal and costs effective construction matrial to fill unwanted voids or stabilize areas after landslides

  • No transportation, on-site production
  • Reduction of carbon dioxide footprint
  • Alternative for foam glass or aerated clay
  • Void filling ability, adjustable viscosity due to various additives
  • Fireproofed construction material
  • Fully recyclable 

Light Gauge Steel

USLPore® can be poured at site into a light gauge steel structure covered by a shuttering system. Compared to competitors the density is remaining constant during the hardening process.

  • Time and costs saving construction method
  • Consistency of density for full wall height
  • Fireproofed construction material
  • Sustainable construction material

USLPore® can be poured directly at site into a form work. Compared to competitors the density is remaining constant during the hardening process.

  • Time and costs saving construction method
  • Consistency of density for full wall height
  • Fireproofed construction material
  • Sustainable construction material

Formwork

Formwork

USLPore® can be poured directly at site into a form work. Compared to competitors the density is remaining constant during the hardening process.

  • Time and costs saving construction method
  • Consistency of density for full wall height
  • Fireproofed construction material
  • Sustainable construction material

Road/Rail Sub-Base

USLPore® is an ideal and costs effective construction matrial for substructures of roads and railways. 

  • No transportation, on-site production
  • Reduction of carbon dioxide footprint
  • Alternative for foam glass, aerated clay and other filling materials
  • Void filling ability, adjustable viscosity due to various additives
  • Fireproofed construction material
  • Fully recyclable 

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