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High Stiffness Flexible Carbon Fiber Tube 100% 3K Carbon Composites Tubing

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: Flexible Carbon Fibre Tube Surface: Glossy, Matte
Line: 3K Or 1K,1.5K, 6K Lay Up: 3K+UD+3K,3K+Fiberglass, Full UD, Full Fiberglass
Density: 1.5g/cm3 C Content (%): 100%
Weave: 3K Plain / 3K Twill / Unidirection Feature: High Hardness, Light Weight, Corrosion Resistance
High Light:

3K Matte Carbon Fiber Round Tube

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3K Carbon Composites Tubing

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High Stiffness Flexible Carbon Fiber Tubing

Product Description

High Stiffness 100% 3K Carbon Composites Tubing Flexible Carbon Fibre Tube

 

Flexible carbon fiber tubes, also known as flexible carbon fiber rods or poles, are tubular structures made from carbon fiber-reinforced composites with the unique ability to bend and flex while maintaining their structural integrity and strength. These tubes are designed for applications that require a combination of lightweight, high strength, and flexibility.

 

 

Key Characteristics:

  • Flexibility: The primary feature of flexible carbon fiber tubes is their ability to bend and conform to various shapes and curves without breaking or losing their structural integrity.
  • Lightweight: Like other carbon fiber composites, these tubes are lightweight, making them ideal for applications where weight reduction is critical.
  • Strength: Despite their flexibility, these tubes are still strong and offer a high strength-to-weight ratio, making them suitable for load-bearing applications.
  • Corrosion Resistance: Carbon fiber composites are naturally resistant to corrosion, making flexible carbon fiber tubes suitable for outdoor and marine applications.
  • Customizable: These tubes can be tailored to specific lengths and diameters to meet the requirements of different applications.

Flexible carbon fiber tubes are versatile and can be tailored to specific requirements. Their unique combination of flexibility and strength makes them suitable for a wide range of applications across different industries.

 

 

TECHNICAL DATA SHEET
Manufacturing Method :
Round Carbon Fiber Tube - By Roll Wrapping Process
Custom Shape Carbon Fiber Tube - By Compression Moulding Process
Structure
UW
U= Undirectional Prepreg
W= Woven Prepreg
Raw Materials :
Carbon Fiber , Epoxy
Diameter Range O.D.
From 6mm O.D. to 300 mm
Wall Thickness
From 0.5mm to 20mm
Length :
From 0.05 Meter to 3.5 Meters
Colors :
Black Or Any Color from RAL ;
Surface Treament :
Matt Finish & Glossy
Water Absorption
< 1,5 w-%
Denisty
1.5g/cm3
FIBER TYPE
HS Carbon
HM Carbon
Stifiness
90- 100 Gpa
120-180
Bending Strength
>600 Mpa
>500 Mpa
Tensile Strength
> 650 Mpa
>550 Mpa
Denisity
> 1.5g/cm3
>1.5g/cm3

 

The main use of carbon fiber is to composite with resin, metal, ceramic, and carbon as reinforcement to make advanced composite materials. Carbon fiber-reinforced epoxy resin composites have the highest strength and specific modulus among existing engineering materials. Carbon fiber's high-temperature resistance ranks first among all chemical fibers.

 

Carbon fiber tubes are widely used and can be made into aircraft frame beams, arrow shafts, formula racing structural parts, fishing rods, mechanical arms, transmission shafts, etc.

 

Advantage

 

Excellent physical and chemical properties

 

The density of carbon fiber is less than 1/4 of steel, generally in the range of 1.5-2.0 g/cm³, and the tensile strength is 7-9 times that of steel, up to 1-7 GPa. Typically, the modulus of carbon fiber is more than three times that of traditional glass fiber, and the modulus of high-modulus carbon fiber can be as high as 700GPa. In addition, carbon fibers have the flexibility and processability of textile fibers.

 

Abrasion Resistance

 

Wear is minimal when carbon fiber and metal are paired. Carbon fiber is often used to replace asbestos to make advanced friction materials.

 

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