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Tubular Webbing

Tubular Webbing

Materials:

Nylon, nylon 66, aramid (Kevlar), etc.

Specification:

Width: 25mm

Thickness: 1.05mm, 2mm

Application:

Seat structures, parachute safety belts, cargo nets, straps for transport systems, components of safety systems, etc.

Color Customization

All styles can be customized according to specifications, materials, waterproofness, flame retardancy, etc. If you have any other requirements, please contact us.

Aerospace Webbing CONTACT US
Aerospace Webbing CONTACT US

Tubular webbing is commonly used in aerospace due to its excellent performance and reliability in various extreme environmental conditions, such as high altitude, low temperature, high temperature, high pressure, high vacuum, high-speed airflow, strong vibration, etc.

High-performance synthetic fibers are usually used to make tubular webbing. These materials have extremely high specific strength, modulus and impact resistance, enabling them to withstand significant mechanical stress in harsh conditions without failure.

Aerospace Webbing

Our tubular webbing has excellent high temperature resistance and low temperature stability. It will not soften, become brittle, or thermally degrade when exposed to high temperatures for a long time, and it maintains good flexibility and impact resistance at low temperatures without brittle fracture.

In addition, it has excellent flame retardant properties. It can self-extinguish or delay combustion even when exposed to flames without producing a large amount of toxic smoke. This feature is usually achieved by selecting flame-retardant fiber materials or performing special flame-retardant treatment on the webbing.

Aerospace Tubular Webbing

Our tubular webbing has good chemical corrosion resistance, ozone aging resistance, UV aging resistance, and other properties to ensure stable performance during long-term use.

In addition, because of the use of high-strength, low-density materials, and optimized weaving structure, our tubular webbing can reduce its weight as much as possible without affecting its load-bearing and protective functions. This is critical in extremely weight-sensitive industries such as aerospace, and can significantly improve performance and reduce costs.

INQUIRY

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