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Expanded polystyrene boards

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Applications:

EPS is proven thermal insulation material and modern construction is unthinkable without it. The EPS boards are proven their indisputably place in the modern construction thanks totheir properties, solidity, breathability and fire ability (clas E) and thermal insulations.

Properties

Symbol

Unit

Description

Material

-

-

EPS

Width x Length

W x L

mm

500x1000 and (1000х2000)*

Thickness

T

mm

20-100

Declared Level of compressive strength at 10% deformation

-

  kPa

 

Declared Thermal Conductivity (after 25 years)

-

W/mK

0,0285-0,036

Water Absorption

-

-

2% of the volume

Water vapor Diffusion Resistance Coefficient

-

µ

30 - 70

Thermal Resistance

°C

-

до 95°С

Reaction to fire

Class

-

E (BDS)

Expanded polystyrene (EPS) is microporous synthetic organic material, 95% closed areas of air in the grid of the EPS polymer, known as Styropor (Styropor is trademark of BASF and means the name of the raw material, which EPS is made of).

Types EPS and their application:

·         EPS 70 – thermal insulation of walls and places, which are not under pressure

·         EPS F – Façade, suitable for places, which are under atmospheric influences, stable, easy installation, good thermal insulation properties.

·         EPS 120 – Suitable for high loadandpressure, for flat roofs under cement, with high compressive strength.

·         EPS plumbaginous – unique thermal insulation material, in its structure are built in graphiteabsorbersandreflectors. This EPS lowers 70-80 % the costs for heating, keeps heat, and has better thermal and sound insulations properties than the ordinary EPS. It is ecological productcompletelyrecyclable and lowers the exhaust of gas emissions in the atmosphere. The EPS is particularly effective and suitable for lowenergyand passive buildings, hospitals, schools, kinder gardens and production facilities.

   

*EPS is offered in thickness 20-100 mm.

*Declared Thermal Conductivity λ is 0,037 - 0,032.

  1. Brick wall
  2. Adhesive
  3. EPS