8mm Industrial Pan Based Carbon Fiber Felt Rolls 0.12 - 0.16g/cm3
Product Details:
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Place of Origin: | China |
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Brand Name: | HUAIYING |
Certification: | CFF-RB |
Payment & Shipping Terms:
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Minimum Order Quantity: | 1000m INDUSTRIAL RAYON BASED CARBON FIBER FELT ROLLS |
Delivery Time: | within 15days |
Payment Terms: | L/C, D/A, D/P, T/T, Western Union, MoneyGram |
Supply Ability: | 200000m per month |
Detail Information |
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Thermal Conductivity: | 0.15~0.25W/m.k | Carbon Content: | ≥99.85% |
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Ash Content: | ≤500ppm | Bulk Density: | 0.085~0.11g/cm3 |
Working Temperature In Oxyen-free Condition: | 3200~3400℃ | Working Temperature In Oxyen Condition: | 300~340℃ |
Width: | ≤160cm | Thickness: | 10/15/20±0.5mm |
Highlight: | Rayon Based Fiber Felt Rolls,Carbon Fiber Felt Rolls,Rayon Based Industrial Felt Rolls |
Product Description
Rayon-based carbon fiber felt is a type of high-performance carbon material that is made from rayon fibers. The rayon fibers are chemically treated and then heated to high temperatures in an oxygen-free environment to create a carbonized material that is strong, lightweight, and highly resistant to heat and chemicals. It has lesser defects, low thermal conductivity, reasonable bulk density, good anti-oxidant properties, it also shows good insulating efficiency in applications.
The resulting carbon fiber felt has a unique structure that consists of interconnected fibers that form a porous three-dimensional network. This structure provides excellent thermal and electrical conductivity, making it an ideal material for use in a wide range of applications, including aerospace, automotive, energy storage, and electronics.
Rayon-based carbon fiber felt is highly flexible and can be easily formed into a variety of shapes and sizes, making it a versatile material for use in various manufacturing processes. It is also highly durable and can withstand extreme temperatures and harsh environments, making it an ideal material for use in high-performance applications.
Overall, rayon-based carbon fiber felt is a high-quality, high-performance material that offers exceptional strength, durability, and thermal and electrical conductivity. Its unique properties make it an ideal material for use in a wide range of applications, from aerospace and automotive to energy storage and electronics.
Technical data:
Property | Unit | Normal Quality | Upgraded Quality |
Code Number | -- | CFF-RB1 | CFF-RB2 |
Thermal conductivity | W/m.k | 0.20~0.25 | 0.15~0.20 |
Carbon Content | % | ≥99.85 | ≥99.9 |
Ash Content | ppm | ≤500 | ≤100 |
Bulk Density | g/cm3 | 0.10~0.11 | 0.085~0.095 |
Working Temperature in Oxygen-free Condition |
℃ | 3200~3400 | 3200~3400 |
Working Temperature in Oxygen Condition |
℃ | 300~340 | 300~340 |
Width | cm | ≤160 | ≤160 |
Thickness | mm | 10±0.5 | 10, 15, 20±0.5 |
Applications:
1. Thermal insulation: Rayon-based carbon fiber felt has excellent thermal insulation properties and can be used as insulation material in high-temperature environments, such as in the aerospace and metallurgical industries.
2. Battery manufacturing: Rayon-based carbon fiber felt has high electrical conductivity and excellent chemical stability, making it a useful material for battery current collectors.
3. Catalyst support: Rayon-based carbon fiber felt has high surface area and excellent chemical stability, making it a useful material as a catalyst support.
4. Gas filtration: Rayon-based carbon fiber felt has excellent gas filtration properties and can be used in air purification applications.
Advantages:
1. High-temperature performance: Rayon-based carbon fiber felt has excellent high-temperature stability and can be used for long periods of time under high temperatures.
2. Mechanical properties: Rayon-based carbon fiber felt has excellent mechanical strength and stiffness, making it suitable for high-strength structural materials.
3. Chemical stability: Rayon-based carbon fiber felt has excellent chemical stability and can withstand the corrosion of various corrosive media.
4. Low density: Rayon-based carbon fiber felt has a low density, making it suitable for the manufacture of lightweight materials.
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