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  • ARMATON multiaxial fabric is a textile material consisting of one or more layers of glass fibers. The layers are oriented in various directions and stitched with a polyester yarn.

    ARMATON multiaxial fabrics are manufactured using state-of-the-art equipment from Germany, which guarantees   output of high-quality products.

  • Physical and mechanical properties

     

    Property Unit

    ARMATON

    350286

    ARMATON

    450272

    ARMATON

    450271

    ARMATON

    650212

    ARMATON

    600285

    Orientation of fibers, layer-by-layer degree (angle) +45°/-45° +80°/-80° +45°/-45° +45°/-45° +45°/-45°
    Surface weight

    g/m², ±15%

    350 450 450 650 600

    Distribution of surface weight,

    layer-by-layer

    % 50/50 50/50 50/50 50/50 50/50
    Tensile strength, layer-by-layer** N/5cm, not less than 4000/ 4000 4100/ 4100 4100/4100 6600/ 6600 7800/ 7800
    Thickness at a pressure of 5kPa

    mm, ±15%

    0.69 0.45 0.50 0.68 0.65
    Standard roll size

    width (without fringe)

    cm 125±1 125±1 123±1 125±1 125±1
    length m ≥50

     

    Property Unit

    ARMATON

    600280

    ARMATON

    700316

    ARMATON 7

    50493

    ARMATON

    770294*

    ARMATON

    800287

    Orientation of fibers, layer-by-layer degree (angle) 0°/90°

    0°/+45°/-45°

    0°/+45°/ 90°/-45° +45°/-45° +45°/-45°
    Surface weight

    g/m², ±15%

    600 700 750 770 800

    Distribution of surface weight,

    layer-by-layer

    % 80/20 33/33/33 25/25/25/25 50/50 50/50
    Tensile strength, layer-by-layer** N/5cm, not less than

    11760/2744

    4700 /4200 /4200

    3400 /3500/3400 /3500

    4100/4100 8700/8700
    Thickness at a pressure of 5kPa

    mm, ±15%

    0.69 0.75 0.70 0.77 0.88
    Standard roll size

    width (without fringe)

    cm 125±1 125±1 125±1 123±1 125±1
    length m ≥50

     

    Property

    Unit

    ARMATON

    950329

    ARMATON

    1450374

    ARMATON

    1200492

    ARMATON

    800486

    Orientation of fibers, layer-by-layer degree (angle)

    0°/+45°/-45°

    0°/+45°/-45°

    0°/+45°/ 90°/-45°

    0°/+45°/ 90°/-45°

    Surface weight

    g/m², ±15%

    950 1450 1250 800

    Distribution of surface weight, layer-by-layer

    % 50/25/25 33/33/33 25/25/25/25 25/25/25/25
    Tensile strength, layer-by-layer** N/5cm, not less than

    9300/4700/4700

    9300/9900/9900

    6200/6600/6600/6600

    4200/4100/2300/4100

    Thickness at a pressure of 5kPa

    mm, ±15%

    0.82 1.15 1.21 0.71
    Standard roll size

    width (without fringe)

    cm 125±1 124±1 125±1 125±1
    length m ≥50

    *The fabrics contains a layer of chop strand mat

    **The tensile strength property, layer-by-layer is referential

    Manufacture of the material with other physical and mechanical properties is accepted upon agreeing about with a consumer.

     

    • Maximum width of sheeting is 1.27 m
    • 10 cm bands and wider are possible
    • Strands are normally oriented in 0, 90, +45, -45 directions. Change in orientation angle from +20 to +90 and from -20 to -90 is possible
    • Plying with a nonwowen fabric or chopped fiber for better adhesion inside composite or for finishing of surface are possible
    • Depending on type and length of a stitch of stitching yarn, manufacture of fabric with various extent of drapability is possible
    • System of sizing agents is meant for achieving excellent adhesion with polyester, epoxy and phenol resins (a general-purpose sizing agent, silane, is use
    • The fabric can be manufactured out of various types of glass and basalt or combination thereof.

     

    Depending on number of layers, the following fabrics are manufactured:

    • One-layered /monoaxial (0/90)

    • Two-layered / biaxial (0/90), (+45/-45)

    • Three-layered / triaxial (0/+45/-45)

    • Four-layered / quadri-axial (0/+45/90/-45)

     

     

  • Typical application:

    ARMATON multiaxial fabrics are used as a reinforcing filler for making high-endurance materials out of fiberglass reinforced plastics (FRP).

    The FRP based on multiaxial fabrics are successfully applied in the following industries:

    • wind energy (blades, aerodynamic tunnel of wind power generators)
    • aircraft (fuselages of planes and helicopters, main and anti-torque rotors of helicopters, wings, aerodynamic fairing, passenger seats)
    • space (aerials, paraboloidal mirrors, autoclaves)
    • marine (hulls)
    • automotive (non-load bearing parts of a car body, refrigerated containers)
    • railway (bodies of rail and subway cars, aerodynamic fairings, load-bearing parts of interior furnishing)
    • building (reinforcement of concrete structures, window and door profiles, tents, bridges)
    • tubes and vessels for storage and transportation of deleterious substances
    • sports gear (tennis rackets, skis, surfs boards and snowboards, boats, bicycle frames, ice hockey sticks and helmets)
    • medicine (medical devices)

     

     

  • Advantages:

    glass-fiber multiaxial fabrics are non-inflammable, non-toxic.

     

    Compared to woven roving glass fabrics, multiaxial fabrics ensure:

    • high strength properties in terms of tension, bend, torsion
    • impact resistance
    • quick and high-quality impregnation with binding agent
    • reduction in quantity of fabric during laying and optimization of composites manufacturing process
    • high workability
    • possible reinforcement of composite materials in different directions
    • reduction in consumption of resin to 20-30%: owing to non-interwowen yarns, strands are laid denser as compared to roving fabrics, thus resulting in lower resistance to flow of a binding agent
    • final weight may be reduced to 50%
    • mechanical strength may be increased twice (twice mechanical strength of roving fabrics with comparable surface weight)
    • strict adherence to assigned reinforcement design
    • absence of nodes on surface of product.