Refractory blanket CIP-112 / CIP-212

Price: on request

Refractory blanket CIP-112 / CIP-212 – has been rated as a material with excellent thermal characteristics (as evidenced by the relevant reviews). It is applied in such industries as metallurgy, energy, chemistry and petroleum chemistry, engineering and many others. Refractory blanket has a wide range of applications, primarily as a high-temperature heat-insulating and refractory material.

A notable feature of the refractory blankets production is that the ceramic fibers from which they are produced are passed through a needle puncher that sews them with the same ceramic fiber. Also, blankets are heat treated. All this is required in order to achieve mechanical strength and elasticity, eliminate the presence of organic compounds, reduce the shrinkage of refractory blankets when exposed to high temperatures during operation, etc.

CIP-112 / CIP-212

Density, kg/m3

128, 160

Sizes: thickness, width, length, mm

12,5 х 610 х 14 640
25 х 610 х 7320
50 х 610 х 3660

 

Тype:
refractory blanket made of ceramic fiber.

Benefits:
• thermal stability;
• low thermal conductivity;
• low heat accumulation;
• resistant to thermal shifts and shocks; 
• mechanical strength;
• stable density and small shrinkage;
• resistant to chemicals;
• elasticity and flexibility;
• good sound absorption;
• keep durability when exposed to high temperatures;
• easily producible, easy to process and install.

Application:
• for lining of various types of furnaces;
• for thermal insulation of boilers and flues;
• as a fireproof material;
• for multiple insulation of steam and gas turbines;
• as high-temperature gaskets;
• for thermal insulation of pipelines with a high operating temperature;
• as a seal for high-temperature compensation joints;
• removal of voltage during insulation of welding seams;
• as a filtration at high temperatures.

Main technical characteristics

UOM

CIP-112

CIP-212

Application temperature:
maximum
working

0С

1050
950

1260
1000

Density

kg/m3

128

128

Coefficient of thermal conductivity
at 500 0С (density 128 kg/m3)

W/m*K

< 0,153

< 0,153

Heat capacity at a temperature 1000 0С

J

1047

1047

Linear shrinkage after 24 hours of heating
at a temperature 950 0С
at a temperature 1000 0С

%


< -3

 

< -3

An ultimate strength on a gap (128 kg/m3)

MPa

0,05 - 0,075

0,05 - 0,075

Chemical composition:
Al2O3
SiO2

%

> 40
> 55

> 44
> 52