Hot-ing 1200°C High-Temperature Insulation Aluminum Foil Ceramic Fiber Blanket

PRODUCT PARAMETERS

Description
REQUEST A QUOTE

Description

Overview of Hot-ing 1200°C High-Temperature Insulation Aluminum Foil Ceramic Fiber Blanket

Hot-ing 1200°C High-Temperature Insulation Aluminum Foil Ceramic Fiber Blanket 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 Hot-ing 1200°C High-Temperature Insulation Aluminum Foil Ceramic Fiber Blanket

  • 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 Hot-ing 1200°C High-Temperature Insulation Aluminum Foil Ceramic Fiber Blanket

This is the Hot-ing 1200°C High-Temperature Insulation Aluminum Foil Ceramic Fiber Blanket. It handles very high heat. It insulates well against extreme temperatures. The core material is ceramic fiber. This fiber is light and handles heat well. The blanket can resist temperatures up to 1200 degrees Celsius. That is 2192 degrees Fahrenheit. It keeps heat where you need it. It stops heat from escaping.

The blanket has aluminum foil on one side. The foil helps reflect heat. It acts like a barrier. This barrier improves insulation. It protects the ceramic fiber underneath. The foil facing is tough. It resists tears. The ceramic fiber inside is flexible. You can cut it easily. You can shape it to fit different spaces. It fits pipes, furnaces, boilers, kilns. It works for many industrial uses. It saves energy. It lowers heat loss. This saves money.

This blanket is made for demanding jobs. It insulates furnaces perfectly. It is good for foundries. It suits kilns needing high heat. It protects equipment. It makes things safer. It reduces surface temperatures. Workers stay safer. The ceramic fiber has low biopersistent fibers. It meets safety rules. It is safer than older materials.

Installation is simple. The blanket is light. Workers handle it easily. It bends to fit curves. It fills gaps tightly. This gives better insulation. It lasts a long time. It resists thermal shock. Temperatures changing quickly do not damage it. It stays strong. It keeps its shape. It keeps insulating well over time. You get reliable performance. You save on replacement costs. You save on energy bills. It is a smart choice for high-heat insulation.

Applications of Hot-ing 1200°C High-Temperature Insulation Aluminum Foil Ceramic Fiber Blanket

Hot-insulated ceramic fiber blankets wrapped in aluminum foil offer reliable protection against extreme heat. These specialized materials handle temperatures up to 1200°C. They are essential where intense heat poses risks. Workers need safety and equipment needs protection. This insulation provides both.

Industrial furnaces benefit greatly. The blankets line furnace walls and doors. They keep heat inside effectively. This saves energy and improves efficiency. Kilns in ceramics or metals production use them too. Consistent high temperatures are critical for quality results. The insulation helps maintain these temperatures.

High-temperature pipes and ducting require shielding. Heat loss wastes energy. Surface temperatures can be dangerous. Wrapping these components in the foil-faced blanket prevents heat escape. It also creates a safer environment for personnel working nearby. Boilers and exhaust systems face similar challenges. Insulating them reduces surface heat significantly.

Foundries and metal processing plants face extreme conditions. Molten metal operations generate intense radiant heat. Protecting surrounding structures and workers is vital. Applying this insulation forms a barrier against that heat. It reflects heat away from sensitive areas. Thermal shields often incorporate this material. They protect equipment and personnel from direct exposure.

The aluminum foil surface is key. It reflects radiant heat superbly. This boosts the insulating performance. The ceramic fiber core traps heat within its structure. Together, they form a powerful heat barrier. The blankets are flexible and easy to install. They conform well to curved surfaces and complex shapes. Cutting and fitting them is straightforward.

Durability matters in harsh settings. These materials resist thermal shock and chemical corrosion. They last well under demanding conditions. Using them brings clear advantages. Energy costs go down because less heat escapes. Equipment lasts longer without heat damage. Workplace safety improves as surface temperatures drop.


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 Hot-ing 1200°C High-Temperature Insulation Aluminum Foil Ceramic Fiber Blanket

People often ask about the Hot-ing 1200°C High-Temperature Insulation Aluminum Foil Ceramic Fiber Blanket. Here are answers to common questions.

What exactly is this blanket? It’s a special insulation material. It’s made from fine ceramic fibers. These fibers are spun together. They create a very flexible blanket. Aluminum foil covers one side. This foil reflects heat away. The blanket feels soft like cloth. It is easy to cut and shape. People use it where things get extremely hot.

How hot can it handle? This blanket resists heat up to 1200°C. That’s 2192°F. It won’t melt or break down at that temperature. It stays stable. It keeps its insulating power. It works well for very hot industrial jobs. Other materials might fail. This blanket holds up.

Why pick ceramic fiber over other stuff? Ceramic fiber is light. It holds heat in very well. It also saves energy. Furnaces and heaters lose less heat. This blanket is tough. It lasts a long time. It handles sudden temperature changes. It doesn’t crack easily. It insulates better than many older materials. It saves money over time.

How do you put it on? Installation is straightforward. You cut the blanket to size. You use sharp scissors or a knife. Then you wrap it around hot parts. You can secure it with wire or bands. You can layer it for extra insulation. Make sure the foil side faces the heat source. This reflects the heat back. Always wear gloves. The fibers can irritate skin.

Where is this blanket used most? Its main job is insulating hot equipment. People use it on industrial furnaces. It works on kilns and ovens too. It insulates boilers and heaters. It protects pipes carrying hot fluids. It is used in power plants. Foundries use it for molten metal. It helps save energy in many factories. It keeps heat where it should be.

REQUEST A QUOTE

REQUEST A QUOTE