Braided Reinforced Pultruded Tubes: Superior Carbon Fiber Solutions

braided reinforced pultruded tube

At E-YONNG Composites, we leverage cutting-edge pultrusion technology to manufacture premium braided reinforced pultruded tubes – the ultimate solution for demanding industrial applications. As a vertically integrated carbon fiber factory, we control every production stage from raw fiber to finished pultruded braided composite tube, ensuring unmatched quality consistency.

Why Choose Our Braided Pultrusion Tubes?

  • In-house carbon fiber production for superior material control
  • ISO-certified manufacturing with automated precision
  • Custom fiber architecture optimization for specific load requirements
  • Strict aerospace-grade QC protocols

Critical Advantages Over Unidirectional Tubes

Braided pultrusion tube technology delivers transformative benefits compared to traditional unidirectional alternatives:

Structural Superiority

  • 360° reinforcement from interlocking braids vs. linear strength only

  • 45% higher impact resistance due to multidirectional fiber alignment

  • Enhanced damage tolerance with crack-propagation resistance

  • Superior torsional stiffness for rotating applications

Performance Benefits

  • 20% better fatigue life in cyclic loading environments

  • Reduced delamination risk at stress concentration points

  • Improved dimensional stability under thermal cycling

  • Higher shear strength for complex load scenarios

Standard Sizes & Specifications

 

Outer Diameter (mm) Wall Thickness (mm) Common Lengths (m)
5 – 25 1.0 – 2.5 0.2 – 5
26 – 50 2.0 – 4.0 0.2 – 5
51 – 100 3.0 – 8.0 0.2 – 5
101 – 200 5.0 – 15.0 Custom

Specifications of Carbon Fiber

Features T300 T700 T800
Density (g/cm³) 1.55 1.55 1.55
Tensile Strength (MPa) 3400 4900 5200
Elastic Modulus (GPa) 240 250 295
Elongation (%) 1.78 1.76 1.7

Industry-Leading Applications

Our pultruded braided composite tubes excel in:

  • Robotic arms requiring stiffness-to-weight optimization
  • Medical imaging equipment needing EMI transparency
  • Aerospace actuators demanding fatigue resistance
  • High-voltage insulators requiring dielectric strength
  • Performance sports gear seeking vibration damping