
- Microporous Insulation Board

- Microporous Insulation Board

- Microporous Insulation Board

- Microporous Insulation Board

- Microporous Insulation Board
Product Name:Microporous Insulation Board
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- Product Details:
Temperature Grade: 900°C (1652°F), 1100°C (2012°F)
CCEWOOL Microporous Insulation Board is a high-efficiency insulation product based on advanced microporous insulation technology, representing one of the highest thermal insulation performances currently available for high-temperature applications. The board surface can be laminated with aluminum foil or PE shrink film as required.
Temperature Grade: 900°C (1652°F), 1100°C (2012°F)
CCEWOOL Microporous Insulation Board is a high-efficiency insulation product based on advanced microporous insulation technology, representing one of the highest thermal insulation performances currently available for high-temperature applications. The board surface can be laminated with aluminum foil or PE shrink film as required.
CCEWOOL Microporous Insulation Board delivers significantly better insulation performance than conventional materials such as ceramic fiber and calcium silicate. For the same insulation effect, much thinner thickness is required, helping to achieve equipment lightweighting, compact design, and overall energy-saving optimization.
At low temperatures, the thermal conductivity of CCEWOOL Microporous Insulation Board is even lower than that of still air. As temperature increases, its thermal conductivity rises only gradually, while at high temperatures its insulation efficiency can reach 3–4 times that of traditional insulation materials. This makes it an ideal solution for minimizing heat loss and improving energy efficiency in high-temperature systems.

900°C (1652°F) Microporous Insulation Board
1100°C (2012°F) Microporous Insulation Board

Ultra-low thermal conductivity, below 0.05 W/m·K; insulation performance is 3–4 times higher than traditional materials.
Thermal conductivity remains stable with increasing temperature.
Heat resistance up to 1100°C.
A1-class non-combustible material, with excellent thermal stability, low heat release, minimal thermal shock, and long service life.
Non-toxic and environmentally friendly; contains no respirable harmful fibers, produces no smoke or odor when heated, and causes no irritation or harm upon skin contact.

Backup insulation layer for high-temperature furnaces;
Thermal insulation for household appliances;
Fire protection equipment;
Electronic equipment insulation;
Non-ferrous metal furnaces;
Rotary kilns and shaft kilns;
Various incinerators;
Glass heat treatment systems;
Insulation layers around flue gas systems and pipelines.
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CCEWOOL Ceramic fiber
CCEWOOL Microporous Insulation Board
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- Bio Soluble fiber blanket
- Bio Soluble fiber paper
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- Bio Soluble fiber yarn
- Bio Soluble fiber cloth
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CCEWOOL PCW fiber
CCEWOOL Stone wool
CCEWOOL Insulation brick
CCEWOOL Calcium silicate board

- Microporous Soft Board
- Temperature Grade: 900°C (1652°F), 1100°C (2012°F)
CCEWOOL Microporous Soft Board is a high-efficiency, flexible microporous insulation product manufactured through a special process. It features a thermal conductivity lower than that of still air and is laminated with fiberglass cloth, allowing multi-directional bending for thermal insulation of pipelines and complex geometries.

- 1500MX Fiber Module
- Temperature Grade 1500°C (2732°F)
CCEWOOL 1500MX Fiber Module is a microcrystalline refractory fiber module engineered for long-term high-temperature service. Through a proprietary microcrystalline process, the fiber composition and crystal phase structure are optimized, resulting in ultra-low linear shrinkage and excellent thermal stability under sustained high-temperature operation.

- Stone wool board
- CCEWOOL Stone Wool Board is made from basalt and other natural minerals, melted at high temperatures and spun into fibers. These fibers are then bonded with binders, cured, and pressed into rigid boards.

- Stone wool pipe
- CCEWOOL Heat-Resistant Stone Wool Pipe is produced by molding stone wool fibers and curing them at high temperatures. For easy on-site installation, each pipe section can be cut along its axis to fit securely around pipelines. This ensures close contact between the insulation shell and the pipe surface for optimal thermal performance.
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