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Ceresit - Complete EWI Systems
Ceresit - Complete EWI Systems
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Torch-on Roofing Felt

Roben Victoria Red Clinker Brick

Roben Victoria Red Clinker Brick
Roben Victoria Red Clinker Brick
Roben Victoria Red Clinker Brick
Roben Victoria Red Clinker Brick
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Roben Victoria Red Clinker Brick
Roben Victoria Red Clinker Brick
Roben Victoria Red Clinker Brick
Roben Victoria Red Clinker Brick
Roben Victoria Red Clinker Brick
  • Product Code: U2568
  • Stock:TBC
  • Model: 240 x 115 x 71 mm

Röben Victoria Red Clinker Brick

It is distinguished by a face with a touch of quartz sand and an irregular structure, similar to hand-formed bricks.

Together with other elements, such as tiles, angular tiles, half and full bricks, Victoria creates a comprehensive system for building facades, interior elements, fences and landscaping elements. In addition, it is characterized by excellent technical parameters for clinker: longevity and high strength, resistance to external factors, including mechanical damage, frost resistance and low absorbability (up to 6%) as well as fire resistance.


Main characteristics:


1. Irregular structure
2. Longevity and strenght
3. Excellent technical parameters of bricks
4. Frost resistant and durable


TECHNICAL DATA

Dimensions of a brick NF: 240 x 115 x 71 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