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Morgan Advanced Ceramics IFB Insulation Range TJM ™ 20 Thermal Ceramic
Categories: Ceramic; Oxide

Material Notes: JM™ IFB ranges, manufactured via cast process, are market leaders in applications such as Petrochemical and Ceramics where the ability to operate in environments above 1000°C (1800°F) is critical. With low thermal conductivity, due to the unique manufacturing process, the IFB’s deliver the erfect balance of low density and homogenous porosity. Our IFB range delivers big energy savings for many markets and our global manufacturing footprint enables Morgan to meet your regional and global application demands.

Applications: While commonly used in back-up insulation they may also be used as hot face in selected applications. Overall uses include:

  • Aluminium (anode bake furnaces, primary electrolytic cells, holding and melting furnaces and secondary re-melt furnaces)
  • Petrochemical (kilns, flues, refining vessels and heaters and reactor chambers)
  • Iron and steel industry (heat treatment and galvanising)
  • Coke and iron making (blast furnaces, hot blast stoves, hot blast and bustle main)
  • Hobby and laboratory kilns
  • Ceramic industry (including kilns for domestic use)
  • Glass industry

Information provided by Morgan Advanced Materials

Key Words: Thermal Ceramics
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Physical PropertiesOriginal ValueComments
Density 0.500 g/ccASTM C-133
Deformation 0.10 %
@Temperature 1100 °C,
Time 5400 sec
Hot Load Strength, 0.034 MPa
 
Mechanical PropertiesOriginal ValueComments
Modulus of Rupture 0.000700 GPa
Compressive Strength 0.800 MPaCold Crushing Strength; ASTM C-133
 
Thermal PropertiesOriginal ValueComments
Thermal Conductivity 0.150 W/m-K
@Temperature 200 °C
ASTM C-182
 0.180 W/m-K
@Temperature 400 °C
ASTM C-182
 0.220 W/m-K
@Temperature 600 °C
ASTM C-182
Shrinkage 0.020 %
@Treatment Temp. 1070 °C,
Time 86400 sec
soak; ASTM C-210
 
Component Elements PropertiesOriginal ValueComments
Al2O3 43 %
CaO 0.80 %
Fe2O3 1.0 %
Other 1.7 %
SiO2 50 %
TiO2 0.80 %
 
Descriptive Properties
Classification Temperature (°C)1100
Reversible Linear Thermal Expansion Max (%)0.6

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