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Lightweight Composite Carbon Fibre Tube Strength amp Durability amp Vibrant Colors

Minimum Order Quantity : Negotiable Price : Negotiable
Packaging Details : Normal Corrugated Carton Packing for International Shipment Delivery Time : 7 working days after receiving Order Pay
Payment Terms : T/T, Western Union, L/C Supply Ability : 1500pcs month
Place of Origin: China Brand Name: Tanku
Certification: SGS, ROHS Model Number: OEM

Detail Information

Product Name: Carbon Fiber Tube Composite Shape: Round Or Customized
Length: 0~2000mm Color: Black Or Customized
Surface: Plain/Twill/Matte/Glossy Material: 100% Carbon Fiber
Feature: Light Weight High Strength Weave: 3K Plain / 3K Twill
Highlight:

Lightweight Carbon Fibre Tube

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Vibrant Colors Carbon Fibre Tube

Product Description

Lightweight Composite Carbon Fibre Tube Strength amp Durability amp Vibrant Colors

 

A carbon fiber composite tube is a cylindrical component made from a composite material consisting of carbon fibers embedded in a resin matrix. This tube offers a combination of high strength, low weight, and excellent durability, making it ideal for a variety of demanding applications.

 

The uses of shaped composite tubing are as limitless as your imagination. Our shaped tubing is perfect for enabling your design to clock itself. Many of our shaped tubes telescope within one another, and we offer a great selection of carbon fiber and other composite materials and finishes. Plus, we can cut and machine most to order. To get a better idea of available shapes and finishes, order a sample pack!

 

A carbon fiber composite tube represents an advanced material solution, offering unmatched performance for applications demanding a blend of strength, lightweight, and durability. Its unique properties make it indispensable in many high-tech and performance-driven industries.

 

Key Properties

  • High Strength-to-Weight Ratio: Offers excellent tensile and compressive strength while being significantly lighter than traditional materials like steel or aluminum.
  • Stiffness: Provides high rigidity, ensuring minimal deformation under load.
  • Corrosion Resistance: Inherent resistance to corrosion, making it suitable for harsh environments.
  • Fatigue Resistance: Capable of withstanding repeated stress and strain without significant degradation.
  • Low Thermal Expansion: Maintains dimensional stability across a wide range of temperatures.
  • Customizability: Available in various diameters, lengths, wall thicknesses, and surface finishes to meet specific application requirements.

Common Applications

  • Aerospace: Used in aircraft components, satellites, and UAVs for their lightweight and high-strength properties.
  • Automotive: Applied in drive shafts, roll cages, body panels, and performance parts to reduce weight and improve fuel efficiency.
  • Sports Equipment: Found in high-performance gear such as bicycle frames, golf clubs, fishing rods, and archery bows.
  • Industrial: Utilized in robotics, automation machinery, and industrial rollers for their precision and durability.
  • Medical Devices: Employed in imaging equipment, prosthetics, and surgical instruments due to their biocompatibility and structural integrity.
Material Carbon Fiber Tube
Shape Round/oval
Technology Roll-wrapped or pultrusion
Dimension The existing inner diameter of the mold is 4mm-50mm with a length of 1m.
Customizable size: The maximum diameter can be 200mm, the longest can be 3m.
Surface Black glossy/matte surface/painted
Glossy 3k weave/matte 3k weave
Color metal wire weave
Feature lightweight, high strength
Working Temperature Usually, -30-120 degrees, if special requirement, please let us know.
Place Of Origin China
Function Marine, Agriculture Tools, Arrow Shaft, Medical, Sport Products
Tolerance Diameter Tolerance: +/-0.1mm
Length Tolerance +/-1mm

 

The first use of carbon fiber in high performance goes back to 1960-1970. It became popular very quickly in every technical area where lightness and strength were primary requirements.

 

Carbon fiber originates from thermal pyrolysis in a controlled oven where a material called precursor is strongly warmed up at a temperature of about 2000° C in an inert gas atmosphere to produce graphite.

 

Then other heat treatments modify the final properties of the fibers, for example warming up at temperatures lower than 2000°C gives you a more strength material, whereas with higher temperatures you'll get a more expensive carbon fiber but with a higher Elastic Modulus (Young's modulus).

 

This is why today there are many kinds of carbon fibers that, even if they're similar, leads to products with different prices and performances.

The carbon fibers previously obtained are lately drowned in epoxy resin (called the matrix) that acts as a binder, allowing the fibers to work together and to distribute the strain uniformly to each one of them.


As you can guess this matrix has a primary role and it has been studied and improved in the last years, like the nanocomposite fillers inside of it.


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