Ceramic Fiber Refractory Vacuum Formed Shapes
Small Furnaces Ceramic Fiber Refractory Formed Shapes , Foundry Riser Sleeves
Ceramic fiber vacuum formed shapes are high-performance thermal insulation products manufactured by vacuum forming technology using ceramic fiber, inorganic binders, and selected additives. These ceramic fiber shapes are designed to meet complex high-temperature applications where standard insulation materials cannot provide effective solutions.Custom-designed ceramic fiber shapes for petrochemical and power industries.
Ceramic fiber vacuum formed shapes are custom-made refractory products manufactured by vacuum forming high-quality ceramic fibers with special binders. These shapes are designed to provide excellent thermal insulation and high-temperature resistance for a wide range of industrial applications.
Ceramic Fiber Shapes can be produced in a variety of geometries, such as tubes, cones, sleeves, boards, and complex customized parts.Manufactured through the vacuum forming process, ensuring uniform density and stable performance.Excellent choice for replacing traditional refractory bricks or castables in specific high-temperature areas.
Key Features
Excellent Thermal Insulation – Low thermal conductivity and high energy efficiency.
High Temperature Resistance – Service temperature up to 1,260°C – 1,600°C depending on grade.
Customized Designs – Various ceramic fiber vacuum shapes can be made according to drawings or application needs.
Dimensional Stability – Precise forming ensures accurate fit in furnace linings and industrial equipment.
Corrosion & Thermal Shock Resistance – Performs well under chemical exposure and rapid heating/cooling cycles.
Description:
Laurel Ceramic Fibre Formed Shapes are made from ceramic fiber, attending inorganic and suitable organic binders. The mixture is vacuum processed into boards or formed shapes that keep good mechanical strength after heating. These products can be manufactured using five basic fiber types: classification temperature 1000℃, 1150℃,1260℃, 1400℃.
Features
- Low thermal conductivity saves fuel
- Low heat storage,reduces cycle times
- Lighweight
- Excellent thermal shock
- Resistance resistant to hot gas erosion
- Resists most chemical attacks
- Resists penetration by molten aluminum and other non-ferrous metals
- Contains no asbestos
Applications:
- Tundishes,melting crucibles and hot tops for alloy melting
- Heat insulation for industrial heaters
- Small furnaces
- Riser sleeves for foundries
- Head boxes and launders for continuous sheet casting
- Die casting ladles
- Combustion chambers
Specifications:
Technical data
|
Descriptions |
Common |
Standard |
H Pure |
H Alumina |
Zirconium |
|
|
Classification temperature (℃) |
1260 |
1260 |
1300 |
1400 |
1430 |
|
|
Operating temperature (℃) |
<1000 |
1000 |
1150 |
1260 |
1350 |
|
|
Density(kg/m3) |
250 |
250 |
250 |
250 |
250 |
|
|
350 |
350 |
350 |
350 |
350 |
||
|
The chemistry constitute(%) |
AL2O3 |
44 |
45 |
47-49 |
52-55 |
39-40 |
|
ZrO2 |
|
- |
- |
|
15-17 |
|
Competitive Advantage:
1.Best price, make the products competitive in your market
2.Abundant Experience.
3.Strict Quality Control. Meet clients'quality requirement.
4.Large stocks. Guarantee prompt delivery.
5.Professional Packing. Avoid damage and secure the goods in transportation
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