1700°C polycrystalline mullite ceramic fiber board

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Description

Overview of 1700°C polycrystalline mullite ceramic fiber board

1700°C polycrystalline mullite 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 1700°C polycrystalline mullite ceramic fiber board

  • Excellent Thermal Stability: Withstands continuous operating temperatures up to 1260°C (2300°F) and higher for certain grades, with minimal shrinkage.

  • Low Thermal Conductivity: Provides highly efficient insulation, reducing heat loss and improving energy efficiency.

  • Lightweight & Low Heat Storage: Offers low thermal mass, enabling rapid heat-up and cool-down cycles for improved process control and energy savings.

  • Thermal Shock Resistance: Highly resistant to damage from rapid temperature changes.

  • Excellent Flexibility & Resilience: Can be fabricated into blankets, boards, papers, and textiles to fit complex shapes and applications.

  • Good Chemical Stability: Resists attack from most corrosive agents, except strong alkalis and hydrofluoric acid.

Specification of 1700°C polycrystalline mullite ceramic fiber board

This item is a polycrystalline mullite ceramic fiber board. It manages severe warm. Its optimum service temperature level is 1700 ° C. That is 3092 ° F. This makes it excellent for really warm atmospheres. The board is made from pure mullite crystals. These crystals form during the production process. The procedure involves high temperatures. It produces a distinct polycrystalline framework. This structure gives the board excellent homes.

The board has reduced thermal conductivity. This indicates warmth does not pass through it conveniently. It works as a solid insulator. It maintains warmth where you want it. Power savings are possible. The board likewise has low heat storage. It warms up and cools quickly. This boosts effectiveness in numerous applications. The product is lightweight. Its density is low. This makes handling and setup less complex. It lowers the lots on frameworks.

This board offers excellent thermal shock resistance. It can handle quick temperature level adjustments. It will certainly not crack or break conveniently. This brings about a longer service life. The material is very stable. It resists chemical strike well. A lot of acids and alkalis do not hurt it. It does well in harsh environments. The board has regular top quality. Its residential properties are uniform throughout. This makes certain dependable performance whenever.

These boards are commonly made use of. They match high-temperature furnaces flawlessly. They are good for kilns and warm treatment devices. They function well in glass melting heating systems. They work in chemical handling systems. They function as efficient backup insulation. They are placed behind various other refractory materials. They assist in saving energy. They reduce heating system shell temperatures. They boost total thermal performance. Setup is straightforward. The boards can be reduced conveniently. They fit intricate shapes without much problem. They use a sensible service. They meet requiring commercial insulation demands. They provide strong efficiency in challenging conditions.

Applications of 1700°C polycrystalline mullite ceramic fiber board

This ceramic fiber board handles severe heat up to 1700 ° C. It’s made from polycrystalline mullite fibers. This framework offers it terrific strength and security. It does not reduce a lot under high temperatures. This makes it a top option for requiring insulation work.

Many industries need this type of warm protection. Steel plants use it inside furnaces and ladles. It lines the warm locations. This maintains warmth inside the heating system. Employees save energy. The board also protects the heater framework. It lasts a long time even in hard problems.

Glass makers rely upon it also. It insulates glass melting heating systems and forehearths. Keeping the temperature level stable is key forever glass high quality. This board aids attain that. It reduces warmth loss. This makes the process more reliable.

Ceramics manufacturers use it in kilns. It insulates kiln linings and doors. High firing temperatures are common in ceramics. This board withstands that warm. It ensures even warming inside the kiln. This aids produce consistent, premium ceramic pieces.

Petrochemical and chemical plants likewise profit. It protects reformers and fracturing devices. These systems run at extremely high temperatures. The board supplies thermal insulation. It improves security for the tools. It also helps regulate the process temperature specifically.

Light weight aluminum smelters need it for insulation. It lines crucibles and transfer systems. Molten aluminum is extremely warm. This board protects the equipment from that warmth. It stops heat from escaping. This saves power and keeps the office safer.

Shops utilize it in their core stoves and heat treatment locations. It provides insulation for these high-temperature zones. This improves effectiveness. It helps keep the needed temperatures for treating steels.

This board provides reduced thermal conductivity. This is essential for conserving power. It aids equipment run much longer. It reduces fuel prices. Its resistance to thermal shock is likewise crucial. Tools warms up and cools off repetitively. The board manages these modifications well. It does not crack quickly. This makes it reliable and long lasting.


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 1700°C polycrystalline mullite ceramic fiber board

What is polycrystalline mullite ceramic fiber board?
This board is a special insulation material. It’s made from very pure alumina and silica fibers. These fibers form a strong, bonded structure. It handles temperatures up to 1700°C. That is very hot. It is used where regular insulation fails.

Why can it handle 1700°C?
Its unique fibers are the reason. These fibers have a polycrystalline structure. This structure resists heat much better than older fiber types. It doesn’t break down quickly at high heat. It lasts long. It keeps its strength and insulation power.

Where is this board typically used?
It goes into high-temperature industrial equipment. Think big furnaces for metal or glass. Think kilns for ceramics. It lines the hot zones. It acts as backup insulation. It seals gaps. It saves energy by keeping heat inside the process.

Is this board better than other high-temperature insulation?
Yes, for many tough jobs. It handles more heat than standard ceramic fiber boards. It handles more heat than some rigid insulation bricks too. It is lighter than bricks. That means easier installation. It has low heat storage. That means furnaces heat up and cool down faster. It saves energy.

How do you install this board?
You usually cut it to size. You fit the pieces together. You can use special high-temperature adhesives. You might need mechanical anchors for big pieces. Always follow the maker’s instructions. Wear protective gear when handling. The fibers can be irritating.

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