Ceramic Fiber Board
MOQ: 50 pieces
Description
The strength of ceramic fiber board is higher than that of fiber blankets and vacuum forming felts, and is suitable for high-temperature fields that require rigidity and strength of products. The surface is flat, the size is accurate, the toughness is good, it can be cut at will, and the heat preservation effect is excellent. It is uniform inside and outside and has good heat insulation performance. Ceramic fiber boards offer outstanding thermal insulation properties, making them effective in reducing heat transfer and conserving energy. They have low thermal conductivity, which helps to minimize heat loss and maintain high temperatures within furnaces, kilns, and other thermal equipment. The insulation capabilities of ceramic fiber boards contribute to improved process efficiency and reduced fuel consumption.
Features
The ceramic fiber board has the features as following:
1. Excellent thermal stability and thermal shock resistance
2. Low heat capacity
3. Low thermal conductivity
4. High compressive strength
5. Good toughness
6. Easy to process and install
Application
Ceramic fiber board finds wide-ranging applications in industries and processes that require thermal insulation and protection. Some common uses include:
Furnace and Kiln Linings: They are used to line the walls, roofs, and doors of industrial furnaces, kilns, and ovens, providing insulation and heat containment.
High-Temperature Gasketing: Ceramic fiber boards can be used as gaskets and seals in high-temperature equipment to prevent heat loss or leakage.
Heat Shields: They are employed in heat shields for automotive, aerospace, and other applications where thermal insulation and protection are required.
Thermal Barriers: Ceramic fiber boards can be utilized as barriers or partitions to separate hot and cold zones in industrial processes.
Backup Insulation: They serve as backup insulation behind refractory linings to improve thermal efficiency and reduce heat loss
Physical And Chemical Indicators
Properties |
ST BOD |
GC BOD |
HZ BOD |
TP64 BOD |
TP74 BOD |
|
Specification Temp. (℃) |
1260 |
1260 |
1430 |
1600 |
1700 |
|
Working Temp (℃) |
1000 |
1100 |
1350 |
1450 |
1550 |
|
Bulk Density (kg/m3) |
280-400 |
280-400 |
280-400 |
400-500 |
450-500 |
|
Linear Shrinkage after Heating |
-3.0 (1000℃) @24H |
-3.0 (1100℃) @24H |
-3.0 (1350℃) @24H |
-2.0 (1450℃) @8H |
-2.0 (1550℃) @8H |
|
(w/m.k) Thermal Conductivity |
0.085(400℃) 0.132(800℃) 0.190(1000℃) |
0.085(400℃) 0.132(800℃) 0.190(1000℃) |
0.085(400℃) 0.132(800℃) 0.180(1000℃) |
0.135(400℃) 0.182(800℃) 0.230(1000℃) |
0.185(400℃) 0.232(800℃) 0.280(1000℃) |
|
(MPa) Tensile Strength |
0.2 |
0.2 |
0.2 |
0.3 |
0.3 |
|
Chemical Composition |
Al2O3 |
38 |
42 |
34 |
64 |
75 |
|
Al2O3+SiO2 |
96 |
98 |
- |
99 |
99 |
|
ZrO2 |
- |
- |
15-17 |
- |
- |
|
Fe2O3 |
1.0 |
0.5 |
0.2 |
0.2 |
0.2 |
|
Na2O+K2O |
0.5 |
0.3 |
0.2 |
0.2 |
0.2 |
Size(mm) |
LENGTH*WIDTH*THICKNESS |
Products production process
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