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High Performance Thin Wall High Modulus Carbon Fiber Tube - High Strength Precision Design

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: Thin Wall Carbon Fiber Tube Thickness: Custom /1-1000mm
Weave: 3K Plain / Twill / Unidirection Surface: Glossy/ Matte/ 50% Glossy
Performance: High-Strength Type Mechanical Property: High-Performance Type
Working Temperature: 200 Degree Usage: Industrial, Aerospace, Etc.
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thin wall carbon fiber tube

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Product Description

High Performance Precision High Quality Thin Wall Carbon Fiber Tube - High Modulus

 

Thin Wall Carbon Fiber Tube is a lightweight, high-strength cylindrical component made from carbon fiber with a very small wall thickness, designed for applications where low weight, high stiffness, and precision are critical.

 

Thin wall carbon fiber tubes are manufactured using high-quality carbon fiber prepreg through roll-wrapping or pultrusion processes. With extremely small wall thickness and excellent mechanical performance, they are ideal for applications requiring lightweight structures, high stiffness, and dimensional accuracy.

 

Product Characteristics

 

  • Ultra-thin wall design: Wall thickness can be as low as 0.2 mm, significantly reducing weight while maintaining structural integrity.
  • High strength-to-weight ratio: Much stronger and stiffer than aluminum tubes at the same weight.
  • Excellent rigidity & low deformation: Maintains shape under bending and torsion loads.
  • Corrosion & fatigue resistant: Suitable for long-term use in harsh or outdoor environments.
  • Precision tolerance: Tight OD/ID tolerances, smooth inner and outer surfaces.
  • Customizable: Sizes, fiber lay-up, surface finish, and length can be tailored.

Key Features

  • Ultra-lightweight: Much lighter than aluminum or steel
  • High stiffness & strength: Excellent strength-to-weight ratio
  • Thin wall thickness: Commonly from 0.2 mm to 1.0 mm (customizable)
  • Corrosion-resistant and fatigue-resistant
  • Dimensional stability under temperature changes

Common Manufacturing Methods

  1. Roll-wrapped (prepreg) – higher strength, precise tolerance, best for structural use
  2. Pultruded – cost-effective, uniform cross-section, good axial strength

Product Name

Carbon Fiber Tube

Material

100% Carbon Fiber

Color

Black or custom

Surface

Matt/Glossy

Size

Custom thickness and length

Fiber Specifications

1K/3K/12K

Weaving Style

Plain/Twill

Fiber Type

1. Carbon fiber+carbon fiber
2. Carbon fiber+ glass fiber
3. Carbon fiber+aramid fiber

 

 

Application

1. Aerospace, RC model parts Helicopters Model
2. Manufacture fixtures and tooling
3. Industrial automation and robotics
4. Sports equipment
5. Musical instruments
6. Scientific Apparatus
7. Medical device
8. Others

Our Product

Carbon fiber tube, carbon fiber plate, carbon fiber profiles.

 

Q: How strong is a 3K Carbon Fiber Tube?

 

A: A 3K Carbon Fiber Tube is exceptionally strong, with tensile strengths surpassing 200 GPa (gigapascals). This enables it to withstand immense stress and force before failure. Its strength primarily comes from tightly woven carbon fibers that provide optimal reinforcement. These fibers are further enhanced by a resilient resin matrix, ensuring additional strength and rigidity for the tube.

 

Q: Are there any limitations to the use of 3K Carbon Fiber Tubes?

 

A: While 3K Carbon Fiber Tubes offer several advantages, there are also limitations to consider. Firstly, they are more expensive to produce compared to traditional materials like aluminum or steel, primarily due to the cost of carbon fiber fabric and resin. Secondly, repairing them can be challenging because the fibers are integrated into the resin matrix, making it difficult to replace individual fibers if damaged. Lastly, they can be brittle under certain conditions, such as high impact or stress, potentially resulting in cracking or fracturing.

 

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