Product Details

Alumina Continuous Fiber Woven Tape

Alumina continuous fiber braid is woven with high strength alumina continuous fiber as raw material. Can use different temperature, different conditions of use of yarn specifications and weaving process to meet customer requirements. Its continuous use temperature is about 1200-1300 ℃, and its resistance to molten metal erosion is good. Suitable for heat insulation, heat preservation, sealing, electrical insulation, sound absorption, filtration, etc. in high temperature environment.
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  • Product Details
    • 商品名称: Alumina Continuous Fiber Woven Tape

    Alumina continuous fiber braid is woven with high strength alumina continuous fiber as raw material. Can use different temperature, different conditions of use of yarn specifications and weaving process to meet customer requirements. Its continuous use temperature is about 1200-1300 ℃, and its resistance to molten metal erosion is good. Suitable for heat insulation, heat preservation, sealing, electrical insulation, sound absorption, filtration, etc. in high temperature environment.

    Alumina continuous fiber braid is woven with high strength alumina continuous fiber as raw material. Can use different temperature, different conditions of use of yarn specifications and weaving process to meet customer requirements. Its continuous use temperature is about 1200-1300 ℃, and its resistance to molten metal erosion is good. Suitable for heat insulation, heat preservation, sealing, electrical insulation, sound absorption, filtration, etc. in high temperature environment.

     

    Product Model

    Weave

    Widthmm

    Thicknessmm

    Weight per length (g/m)

    PF-10

    Plain 

    25

    0.30

    10

    PF-24

    Plain

    50

    0.45

    24

     

     

     

Partners

Huayang New Material Technology
Runyang Photovoltaic
Hongen New Material
Aviation Industry Corporation of China Limited
Hunan Ronglan Intelligent Technology Co., Ltd.
Jiangsu Changnai Energy Technology Co., Ltd.
Arsay.
High view solar energy
LONGI
Natural light
BOC Industrial Shen Fei
Institute of Metal Research, Chinese Academy of Sciences
Hefei Institute of Material Science, Chinese Academy of Sciences
China Aerospace Science and Industry Corporation
Nanjing Fiberglass Research Institute
Chinese Space
Sinosteel Lonai
Emergency Management Department Shanghai Fire Research Institute
Tsinghua University
National University of Defense Technology
Dongfang Electric
Beijing Graphene Research Institute
Beijing Glass Research Institute
Harbin Institute of Technology

Product Application Field

3C electronic

3C electronic

Automobile Manufacturing

Automobile Manufacturing

New energy battery

New energy battery

Photovoltaic industry

Photovoltaic industry

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Continuous Alumina Fiber Reinforced Ceramic Matrix Composites

Alumina fiber reinforced ceramic matrix composites, with low density, high specific strength, high specific modulus, corrosion resistance, wear resistance, high fracture toughness and good thermal stability, can effectively overcome the brittleness of ceramic materials, is the most successful application of lightweight high temperature structural composite materials.

Alumina continuous fiber F-72

With an alumina content of 72% and a maximum operating temperature of 1200°C, the fibers are flexible, making them ideal for manufacturing textile products. After weaving or sewing, they can be formed into heat-insulating seals of various shapes and are also suitable for reinforcing composite materials.

Alumina continuous fiber B-70

With an alumina content of 70% and a boron content of 2%, this fiber has a higher operating temperature than F-72, reaching up to 1,350 degrees. It offers good flexibility and excellent weaving properties, allowing it to be woven into high-temperature-resistant fabrics of various shapes. It is suitable for thermal protection applications—such as those in the petrochemical industry—that involve extreme high-temperature conditions.

Alumina continuous fiber C- 85

With an alumina content of 85%, it can be used for extended periods at high temperatures of 1300°C and is suitable for ceramic matrix composite applications. Ceramic products made from this material offer the best resistance to high-temperature thermal shock and creep, and can be used for extended periods in high-temperature, oxygen-rich environments.

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