Professional industry ceramic supplier, silicon nitride, silicon carbide, aluminum nitride and any other kinds of ceramics.
PRODUCT PARAMETERS
Description
Overview of Polycrystalline mullite fiber board 2000°C/1800°C, Ceramic Fiber board, refractory Ceramic Fiber board
Polycrystalline mullite fiber board 2000°C/1800°C, Ceramic Fiber board, refractory Ceramic Fiber board is a lightweight, high-temperature insulation material composed primarily of alumina-silica. It is manufactured through a melting and spinning or blowing process, resulting in a flexible, wool-like textile. This material is engineered to provide exceptional thermal management, conserving energy and protecting equipment in extreme temperature environments across various industries.
Features of Polycrystalline mullite fiber board 2000°C/1800°C, Ceramic Fiber board, refractory Ceramic Fiber board
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Excellent Thermal Stability: Withstands continuous operating temperatures up to 1260°C (2300°F) and higher for certain grades, with minimal shrinkage.
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Low Thermal Conductivity: Provides highly efficient insulation, reducing heat loss and improving energy efficiency.
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Lightweight & Low Heat Storage: Offers low thermal mass, enabling rapid heat-up and cool-down cycles for improved process control and energy savings.
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Thermal Shock Resistance: Highly resistant to damage from rapid temperature changes.
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Excellent Flexibility & Resilience: Can be fabricated into blankets, boards, papers, and textiles to fit complex shapes and applications.
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Good Chemical Stability: Resists attack from most corrosive agents, except strong alkalis and hydrofluoric acid.
Specification of Polycrystalline mullite fiber board 2000°C/1800°C, Ceramic Fiber board, refractory Ceramic Fiber board
Polycrystalline mullite fiber board takes care of extreme heat. This refractory ceramic fiber board utilizes pure polycrystalline mullite fiber. It provides outstanding high-temperature efficiency. The board is available in two grades. One grade stands up to temperatures approximately 2000 ° C. The various other grade holds up against temperature levels approximately 1800 ° C. These are optimal short-term usage temperatures. Lasting usage temperatures are reduced.
This ceramic fiber board is extremely solid. It has great mechanical toughness. It remains strong also after home heating. The board stands up to thermal shock well. Unexpected temperature adjustments don’t harm it quickly. Its thermal conductivity is reduced. This means it obstructs warm well. It saves power in high-heat applications.
The board has an uniform structure. Its density is generally between 280 kg/m three and 350 kg/m two. This thickness supplies a good mix of toughness and insulation. The board is easy to reduce and form. You can mount it promptly. It fits different heating system shapes.
Chemical security is essential. This mullite fiber board stands up to most chemicals. It does not respond badly with acids or bases. It likewise resists rust from molten steels. This makes it very sturdy in difficult problems. The board consists of no natural binders. It is all ceramic fiber. This avoids contamination in delicate procedures.
People use this board in lots of warm locations. It lines commercial furnaces. It shields kilns. It operates in warm therapy devices. It serves in power generation plants. It fits in chemical handling units. The board gives reputable insulation. It lowers warm loss. It improves heater efficiency. It decreases operating expenses. It extends devices life. Select the right grade for your temperature level requires.
Applications of Polycrystalline mullite fiber board 2000°C/1800°C, Ceramic Fiber board, refractory Ceramic Fiber board
Polycrystalline mullite fiber boards handle extreme warm. They function well up to 2000 ° C short term. Constant use is secure at 1800 ° C. This makes them important for very hot industrial jobs. They insulate high-temperature heating systems perfectly. Consider warmth therapy furnaces or sintering kilns. These boards line the best zones. They also create heater roof coverings and doors. Their low warmth storage space saves energy. Their stamina withstands thermal shock. This indicates unexpected temperature level changes create much less damage. They last longer than numerous various other products under extreme warm.
Ceramic fiber boards are various. They deal with temperature levels up to concerning 1260 ° C or 1430 ° C. This depends upon the particular type. They are extensively made use of for insulation. You find them in central heating boilers and heating units. They cover pipes bring hot liquids. They work well in power plants. They shield equipment from warm loss. These boards are easy to cut and form. This makes installment simple. They are lightweight also. This lowers pressure on frameworks. Their thermal conductivity is reduced. This maintains warm where it belongs.
Refractory ceramic fiber boards are tougher. They are denser and more powerful than conventional ceramic fiber boards. They withstand physical wear and chemical strike much better. They are utilized as back-up insulation behind firebricks. They support kiln car tops. They secure development joints in heating systems. They are good for furnace doors and peep sights. Their resilience is essential in rough atmospheres. They provide dependable insulation where mechanical anxiety is higher. They keep efficiency gradually.
These boards address warmth management troubles. Each kind fits details temperature needs and physical demands. They enhance furnace efficiency and safety and security. They reduce power expenses significantly. They secure devices and extend its life. Choosing the best board depends on the application’s optimum temperature level and conditions.
Company Profile
Tanki New Materials Co.Ltd. focus on the research and development, production and sales of ceramic products, serving the electronics, ceramics, chemical and other industries. Since its establishment in 2015, the company has been committed to providing customers with the best products and services, and has become a leader in the industry through continuous technological innovation and strict quality management.
Our products includes but not limited to Aerogel, Aluminum Nitride, Aluminum Oxide, Boron Carbide, Boron Nitride, Ceramic Crucible, Ceramic Fiber, Quartz Product, Refractory Material, Silicon Carbide, Silicon Nitride, ect. please feel free to contact us.
Payment Methods
T/T, Western Union, Paypal, Credit Card etc.
Shipment Methods
By air, by sea, by express, as customers request.
5 FAQs of Polycrystalline mullite fiber board 2000°C/1800°C, Ceramic Fiber board, refractory Ceramic Fiber board
Here are five common questions about our high-temperature Polycrystalline Mullite Fiber Boards:
What exactly is this Polycrystalline Mullite Fiber Board?
It’s a special insulation board. It handles extreme heat. It’s made from pure polycrystalline mullite fibers. These fibers give it great strength. They also resist very high temperatures well. It works much better than standard ceramic fiber boards. It lasts longer under intense heat.
How hot can this board really get?
We offer two main grades. One grade handles constant temperatures up to 1800°C (3272°F). The other, higher-grade version withstands constant temperatures up to 2000°C (3632°F). Both resist sudden temperature changes. This is crucial in demanding industrial settings.
Where is this type of board typically used?
You find it where heat is extreme. It lines high-temperature furnaces. It protects kilns and reactors. It insulates thermal processing equipment. Industries like ceramics, steel, and aerospace rely on it. It’s essential backup insulation in critical hot zones.
Is it difficult to install?
Installation is straightforward. It’s similar to other ceramic fiber boards. You can cut it easily with regular tools. You shape it to fit your furnace or equipment. You secure it using anchors or adhesives made for high heat. Proper fitting ensures maximum performance.
Is this board safe to use?
Yes, but handle it carefully. Wear gloves and a mask during installation. This prevents skin irritation from loose fibers. Once installed and heated, the board forms a stable surface. Loose fibers become minimal. It performs safely at its rated temperatures. Always follow basic safety practices.
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