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Roben Melbourne LDF Red Smooth Clinker Brick

Roben Melbourne LDF Red Smooth Clinker Brick
Roben Melbourne LDF Red Smooth Clinker Brick
Roben Melbourne LDF Red Smooth Clinker Brick
Roben Melbourne LDF Red Smooth Clinker Brick
Roben Melbourne LDF Red Smooth Clinker Brick
Roben Melbourne LDF Red Smooth Clinker Brick
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Roben Melbourne LDF Red Smooth Clinker Brick
Roben Melbourne LDF Red Smooth Clinker Brick
Roben Melbourne LDF Red Smooth Clinker Brick
Roben Melbourne LDF Red Smooth Clinker Brick
Roben Melbourne LDF Red Smooth Clinker Brick
Roben Melbourne LDF Red Smooth Clinker Brick
Roben Melbourne LDF Red Smooth Clinker Brick
  • Product Code: U2577
  • Stock:TBC
  • Model: 290 x 115 x 52 mm

Röben Melbourne LDF Red Smooth Clinker Brick

Clinker brick with traditional red colored clay in an elongated modern format. Durable, resistant to damage and solid.

It is a great material, among others on facades of single-family houses, large urban projects and objects with post-industrial design. It will look equally interesting in interiors or on the landscaping elements in the gardens.


Main characteristics:


1. Classic red color
2. Resistant to damage
3. Excellent technical parameters
4. Extended LDF format (290 x 115 x 52 mm)


TECHNICAL DATA

Dimensions of a brick LDF: 290 x 115 x 52 mm

The total area of perforation: >15% ≤ 50%

External wall: 21 mm

Bulk density of brick NF i LDF: 1500 kg/m³

Bulk density of brick VNF i VLDF: 2300 kg/m³

Bulk density of brick NF SP: 1650 kg/m³

Bulk density of brick 7-S: 1900 kg/m³

Bulk density of brick XLDF: 1600 kg/m³

Strength of brick NF, NF SP, LDF, XLDF : ≥35 N/mm²

Strength of brick 7-S, VNF, VLDF: ≥45 N/mm²

Absorbability: to 6%

Frost resistance: category F2

Acid resistance: +

Alkali resistance: +

Coefficient of thermal conductivity of brick NF, LDF, XLDF: P = 50% - 0,37 W/mK, P = 90% - 0,43 W/mK

Coefficient of thermal conductivity of brick NF SP i 7-S: P = 50% - 0,45 W/mK, P = 90% - 0,51 W/mK

Coefficient of thermal conductivity of brick VNF, VLDF: P = 50% - 0,72 W/mK, P = 90% - 0,79 W/mK