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Ceramic Fiber Inorganic Board

Ceramic Fiber Inorganic Board ‘S’ Type: Redefining Thermal Insulation Standards”

 

Introduction:

Ceramic Fiber Inorganic Board ‘S’ type is at the forefront of thermal insulation technology. Crafted from premium ceramic fibers, this product is a beacon of innovation, offering unparalleled performance and environmental sustainability. Essential in industries where heat insulation and fire safety are paramount, it exemplifies the fusion of advanced technology and practical application.

Innovative Production Process of Ceramic Fiber Inorganic Board ‘S’ Type:

At the heart of the Ceramic Fiber Inorganic Board ‘S’ type lies a pioneering production process. Our exclusive, environmentally friendly equipment transforms high-purity ceramic fibers into superior inorganic boards, bypassing the need for secondary calcination. This streamlined manufacturing approach not only reduces environmental impact but also enhances the board’s quality and consistency.

 

Unique Characteristics of Ceramic Fiber Inorganic Board ‘S’ Type:

Ceramic Fiber Inorganic Board ‘S’ type is characterized by its negligible organic matter content. Completely smokeless and tasteless, it offers an exceptional safety profile in high-temperature settings. The board’s ability to gain strength and hardness when exposed to fire is a notable feature, coupled with its precise dimensions, refined surface, and superior thermal properties.

 

Broad Applications and Advantages of Ceramic Fiber Inorganic Board ‘S’ Type:

Ceramic Fiber Inorganic Board ‘S’ type is a staple in industries such as metallurgy, petrochemicals, glass, and ceramics. Its resistance to high temperatures and flame makes it a preferred choice for ensuring safety and efficiency in demanding industrial environments. The board’s flexibility allows for custom cutting and processing, fitting specific requirements and supporting environmentally friendly practices in high-temperature insulation applications.

Ceramic Fiber Inorganic Board ‘S’ Type 01

 

Comprehensive Advantages of Ceramic Fiber Inorganic Board ‘S’ Type:

  1. Optimal Thickness Range:
    Ceramic Fiber Inorganic Board ‘S’ Type 05
    Ceramic Fiber Inorganic Board ‘S’ type with thicknesses ranging from 5mm to 200mm, the board maintains its structural integrity and quality across various dimensions.
    The size of traditional organic fiber board is 10mm-60mm, thinner one is fragile and has no strength, while thicker one is hard to dry and easy to moldy deformation as “cotton core”.
  2. Minimal Organic Content:
    Ceramic Fiber Inorganic Board ‘S’ type’s organic content is less than 1.45%, significantly reducing the risks associated with moisture absorption, mildew, and fire hazards.
    The organic content of traditional organic fiber board is 7-9%, it can absorb moisture mildew easily, fire and smoke in higher temperature.
  3. No Need for Calcination:
    Ceramic Fiber Inorganic Board ‘S’ type remains free from smoke and odor at high temperatures, eliminating the need for secondary processing required by traditional boards.
    If the traditional organic fiber board want to be smokeless and tasteless in higher temperature, it must be calcined twice and dipped again after moulded, these stages may cause the organic content is still very high, while the internal strength of the fiber board can not be guaranteed.
  4. Enhanced Durability and Flexibility:
    Ceramic Fiber Inorganic Board ‘S’ Type 04
    Ceramic Fiber Inorganic Board ‘S’ type with uniform density and strength enable the board to be shaped and carved as needed, offering considerable versatility.
    Due to the characteristics of silica sol binder, the traditional organic fiber board can’t form high-density fiber board with one-stage moulding. The internal strength of fiber board can’t be guaranteed because it has to be dipped again after moulded.
  5. Environmental Responsibility:
    Ceramic Fiber Inorganic Board ‘S’ type: Mold resistance and zero wastewater production underscore the board’s alignment with eco-friendly practices and sustainability.
    The traditional organic fiber board is easy to mildew because of starch using, and produce lots of poisonous waste water that inevitably polluting the environment.

 

Long-term Benefits and Sustainability of Ceramic Fiber Inorganic Board ‘S’ Type:

The long-term benefits of the Ceramic Fiber Inorganic Board ‘S’ type extend beyond its immediate functional advantages. By reducing energy costs and improving efficiency, it offers a sustainable solution for insulation needs. This aligns with global trends towards energy conservation and reduced environmental impact, making it an investment in both industrial efficiency and ecological responsibility.

Industry Applications and Performance of Ceramic Fiber Inorganic Board ‘S’ Type:

The versatility of this board is evident in its wide range of applications. In the metallurgical sector, it provides essential insulation for high-temperature processes. In petrochemical plants, it ensures safety and efficiency around flammable materials. Its utility in the glass and ceramics industries is unmatched, offering reliable insulation that withstands extreme temperatures without compromising on environmental standards.

 

Conclusion:

Ceramic Fiber Inorganic Board ‘S’ type is not merely an insulation material; it is a symbol of progress in the field of industrial materials. By combining high-performance features with an environmentally conscious design, it stands as a significant advancement in the pursuit of more efficient and sustainable industrial practices.

Equal or similar with:

Morgan Advanced Materials: I-2300, I-2600, I-2800, I-A5

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Classicification Temperature

oC

1260

1260

1360

1430

Properties measure at ambient condition (23oC/50% RH)

Bulk Density

Kg/m3

320-500

Linear Shrinkage

%

≤ -2.0

1000oCX24h

≤ -2.0

1100oCX24h

≤ -2.0

1200oCX24h

≤ -2.0

1350oCX24h

Organic Content

%

≤ 1.5

Thermal Conductivity at mean temperature of

500 oC

W/M.K

≤ 0.153

≤ 0.153

≤ 0.153

≤ 0.153

Chemical Composition

Al2O3

%

36-38

39-42

45-47

Al2O3+SiO2

%

≥96

≥98

≥99

≥84

ZrO2

%

≥15

Al2O3+SiO2+ ZrO2

%

≥96

≥98

≥99

≥99

Na2O+K2O+Fe2O3

%

≤0.9

≤0.9

≤0.9

≤0.9

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Last updated: 2024-01-03
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