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Pultrusion Profiles

Industrial Production Capacity with 8 Pultrusion Lines

A total of 8 pultrusion lines in our factory, all processes including electricity, ventilation and cutting systems, have been completed and are ready for full capacity production. I-beams, U-channels, angle irons, pipes and special cross-section structural profiles are produced in accordance with EN 13706 standards.

Pultrusion is an advanced manufacturing method used in the production of fiber reinforced composite materials. This method is especially preferred for the production of long and cross-sectional profiles and is based on the principle of shaping the material by pulling it from the mold.

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What is Pultrusion?

Pultrusion is a continuous production method used in the production of fiber-reinforced composite materials. This technology is based on the principle of pulling glass or carbon fibers from a heated mold by passing them through a resin bath. The result is structural profiles that are completely resistant to corrosion with excellent strength/weight ratio.

  • Continuous glass fiber rovings are passed through the resin bath, fed into the heated mold and pulled out of the mold to obtain the desired profile shape. This seamless process ensures high production speed and consistent quality.

Advantages of Pultrusion

  • Lightness

    Composite materials are much lighter than metal alternatives. This feature provides a great advantage in transportation, assembly and structural load calculations.

  • High Strength

    Superior mechanical strength is achieved thanks to fiber reinforcements. Strength values ​​equivalent to or higher than steel can be achieved.

  • Corrosion Resistance

    Pultrusion products show excellent resistance to chemicals, moisture and environmental influences. No rust or rot.

  • Continuous Production

    Since it is a continuous process, it has a high production rate. Large volume orders are completed in a short time.

  • Cost Effectiveness

    It is extremely economical, especially for large productions. Long life and lack of maintenance reduce the total cost of ownership.

Areas of Use

Building
Bridge beams, roof systems, stairs, structural supports and facade elements.
Energy
Wind turbine blades, electric poles, solar panel carriers and transformer insulation parts.
Transportation and Automotive
Light rail systems, automotive parts, vehicle chassis and supporting structures.
Marine
Boat structures, piers, marina platforms and structural elements resistant to sea water conditions.
Industrial Applications
Chemical tanks, pipes, treatment plant covers and industrial facility infrastructure elements.

Technical Advantages

  • High Strength: Thanks to fiber reinforcements, it is lighter than metal but offers higher mechanical strength.
  • Corrosion Resistance: Provides full protection against salt water, acids and chemicals, never rusts.
  • Continuous Production: High production speed with uninterrupted profile production in the desired length.
  • Cost Effectiveness: It is extremely economical, especially for large volume production.
  • Lightweight: Composite construction is significantly lighter than metal alternatives.

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