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Cotton Hcs Acrylic 3D Conjugated Filling Pillow Viscose Staple Fiber Chemical Fabric 7D Polyester Fiber

Suzhou Makeit Technology Co.,Ltd.
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    Buy cheap Cotton Hcs Acrylic 3D Conjugated Filling Pillow Viscose Staple Fiber Chemical Fabric 7D Polyester Fiber from wholesalers
     
    Buy cheap Cotton Hcs Acrylic 3D Conjugated Filling Pillow Viscose Staple Fiber Chemical Fabric 7D Polyester Fiber from wholesalers
    • Buy cheap Cotton Hcs Acrylic 3D Conjugated Filling Pillow Viscose Staple Fiber Chemical Fabric 7D Polyester Fiber from wholesalers
    • Buy cheap Cotton Hcs Acrylic 3D Conjugated Filling Pillow Viscose Staple Fiber Chemical Fabric 7D Polyester Fiber from wholesalers
    • Buy cheap Cotton Hcs Acrylic 3D Conjugated Filling Pillow Viscose Staple Fiber Chemical Fabric 7D Polyester Fiber from wholesalers
    • Buy cheap Cotton Hcs Acrylic 3D Conjugated Filling Pillow Viscose Staple Fiber Chemical Fabric 7D Polyester Fiber from wholesalers
    • Buy cheap Cotton Hcs Acrylic 3D Conjugated Filling Pillow Viscose Staple Fiber Chemical Fabric 7D Polyester Fiber from wholesalers
    • Buy cheap Cotton Hcs Acrylic 3D Conjugated Filling Pillow Viscose Staple Fiber Chemical Fabric 7D Polyester Fiber from wholesalers

    Cotton Hcs Acrylic 3D Conjugated Filling Pillow Viscose Staple Fiber Chemical Fabric 7D Polyester Fiber

    Ask Lasest Price
    Brand Name : Makeit
    Model Number : 1.2D*38MM
    Certification : SGS&OEKO
    Price : Negotiations
    Payment Terms : Negotiations
    Supply Ability : 3000 Tons Monthly
    Delivery Time : 15~20days
    • Product Details
    • Company Profile

    Cotton Hcs Acrylic 3D Conjugated Filling Pillow Viscose Staple Fiber Chemical Fabric 7D Polyester Fiber

    Staple Fiber 4d 51mm PSF Low Melt Polyester Fiber For Filling
    The new material has been researched and developed to enhance the anti-fracture properties of asphalt concrete. It utilizes 100% polyester synthetic material, specifically monofilament synthetic fibers, which are processed using a unique technique. This material offers several advantages, including high strength, corrosion resistance, high temperature resistance, strong chemical stability, and excellent bondability with asphalt. When added to the asphalt concrete mixture, the material forms a large number of three-dimensional distributed monofilament fibers. These fibers serve to reinforce and bridge the asphalt concrete, effectively improving its mechanical properties and preventing cracking.
    1. Function
    1. Prevent early crack of concrete and effectively resist reflection crack
    2. Prolong the life span
    3. Increase the crack-resistance in low temperature
    4. Increase the fatigue-resistance
    5. Improve the flexibility, seepage-resistance, and stability in water
    6. Improve the stability in high temperature
    7. It can be used in hot-mixing bitumen concrete projects and reinforced crack-resistance for high-tensile concrete.

    2. Specification


    Raw material
    Polyester
    Fiber type
    Filament
    Equivalent diameter(μm)
    10-25
    Proportion(g/cm³)
    1.36-1.38
    Color
    Natural color/White
    Length(mm)
    3,6,12
    Tensile strength(MPa)
    ≥400
    Melting point(℃)
    >240
    Fracture elongation(%)
    ≥15
    Melting point(℃)
    >560
    Acid and alkali resistance capability
    Strong
    Heat resistance property
    The volume has no change under 220℃ within 2 hours

    3. Production of viscose fibre


    Viscose is a biodegradable material made from natural wood cellulose. The journey starts from renewable tree plantations where trees have an average harvesting cycle of 5 years in equatorial climate. These wood logs are then debarked and cut into small pieces of wood chips, which are then processed in large digesters to remove lignin, a glue-like substance that binds fibres together. The end product after a few rounds of filtering and washing is dissolving wood pulp.


    Dissolving wood pulp is further dissolved into a viscous liquid which is then crystallised into regenerated cellulose threads called viscose fibres. To make soft, silky and absorbent viscose clothing, these fibres are spun into yarns via a process called spinning, which is the twisting together of drawn out strands of fibres. At the end of this process, these yarns are ready to be woven or knitted into fabric to make clothing. To make wet wipes, facial masks and other hygiene products, viscose fibres are bonded together using non-woven technology by entangling the fibres mechanically, thermally and etc.



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