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KalsiWall
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KalsiWall

KalsiWall® is the ideal solution for the most demanding internal wall applications subject to high traffic or humid conditions:
KalsiWall® provides excellent acoustic insulation. The inclusion of mineral wool in the wall cavity improves both thermal and acoustic performance.
All kinds of conduit, wiring, pipe and other services are easily installed in the cavity of every KalsiWall® system.

Benefits

  • Resistant to the attack of termites, insects and most other vermin
  • Moist, mould and water resistant
  • Wide variety of thickness and applications
  • Impact resistant
  • Dimensionally stable
  • Easy to work and install

Surface finishes


Standard
“KalsiWall® is
resistant to impact,
moisture and water. It
is the ideal solution for
high traffic areas”
Installations

Installations

 

Dimensions

Standard dimensions

KalsiWall® Dimensions
Thickness
(mm)
Width
(mm)
Length
( mm)
Weight per m² of sheet
(kg/m²)
8 1200 2400 11.7
8 1220 2440 11.7
8 1200 2700 11.7
8 1200 3000 11.7
9 1200 2400 12.2
9 1220 2440 12.2
9 1200 2700 12.2
9 1200 3000 12.2

*Other dimensions are available upon request. The properties in above tables are mean values given for information and guidance only. If certain properties are critical for a particular application, it is advisable to consult Nigerite Limited.

Physical and Mechanical Properties

Physical and mechanical properties

General Technical Properties Value Standard
Dimension conformity
• Thickness
• Length
• Width
• Straightness of edges
• Squareness of edges
Level II
(Pass)
ISO 8336: 2009
Density ≥ 1300 kg/m³ ISO 8336: 2009
Moisture content ≤ 15% ASTM C1185
Water absorption ≤ 33% ASTM C1185
Moisture movement ≤ 0.04% ISO 8336: 2009
Thermal conductivity 0.27 W/mK ISO 8336: 2009
Modulus of rupture (Category C) ≥ 10MPa
(Class 3)
ISO 8336: 2009
Durability
Warm water performance Pass ISO 8336: 2009
Soak-dry performance Pass ISO 8336: 2009

Reaction to fire

Reaction to Fire
Non-combustibility Non-combustible BS 476 Part 4: 1970
Surface spread of flame Class 1 BS 476 Part 7: 1997
Fire propagation index I = 1.6
i(1) = 1.0
i(2) = 0.3
i(3) = 0.3
BS 476 Part 6: 1989
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