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Stainless Steel Fiber Spun Yarn
Stainless Steel Metal Fiber Yarn
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Stainless Steel Fiber Spun Yarn

Stainless steel fiber is produced by drawing stainless steel wires into fine fibers and spinning them into yarns. Retaining the metal’s inherent properties, this yarn offers high-temperature resistance and electrical conductivity, making it suitable for manufacturing conductive tapes, heat-resistant tubing, and high temperature resistant or conductive fabrics. Its textile adaptability allows processing through braiding, knitting, and weaving techniques.

    specification

    Material: 316L Pure stainless steel fiber

    Yarn count 3.5Nm/2——16Nm/2
    Packing 500grams or 1000grams per cone
    Resistance/M 50Ω-60Ω
    Operating temp 500-600℃

    Key Characteristics

    1---Conductivity: Stainless steel fibers provide electrical conductivity, making the yarn useful in applications requiring static dissipation or electromagnetic interference (EMI) shielding.
    2---Strength and Durability: The addition of stainless steel fibers enhances the tensile strength and abrasion resistance of the yarn.
    3---Heat Resistance: Stainless steel fibers can withstand high temperatures, making the yarn suitable for use in high-heat environments.
    4---Flexibility: Despite the inclusion of metal fibers, the yarn remains flexible and can be woven or knitted into fabrics.
    5---Corrosion Resistance: Stainless steel is inherently resistant to corrosion, which extends the lifespan of the yarn and fabrics made from it.

    application

    Applications of Stainless Steel Fiber in Spun Yarn:
    1.Materials for high temperature resistant tape, tube ,rope and fabrics knitting or weaving 
    2.EMI Shielding: Fabrics made from stainless steel fiber spun yarn can be used to create enclosures or garments that protect against electromagnetic interference.
    3.Filtration: The yarn can be used in high-temperature filtration sewing or weaving applications, such as in the filtration of hot gases or liquids.
    4.Technical Textiles: Employed in various technical textiles that require a combination of strength, conductivity, and heat resistance.
    5.Smart Textiles: Integrated into smart textiles for applications requiring conductivity, such as in wearable technology.

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