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1000mm Length Matte Twill Fibre 3k Carbon Fiber Tube OD From 8mm to 62mm

Minimum Order Quantity : Negotiable قیمت : 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 نام تجاری: Tanku
گواهی: SGS, ROHS Model Number: OEM

اطلاعات تکمیلی

Product Name: Matte Carbon Fiber Tube Tensile Strength: > 2.463 Mpa
Tensile Strength in Section: 186 kN Density: 1,80 g/cm3
Surface Treatment: Customized Shape: Round
Color: Black or customized Material: 100% Carbon Fiber

توضیحات محصول

1000mm Length Matte Twill Fibre 3k Carbon Fiber Tube OD From 8mm to 62mm
 

Matte carbon fiber tubes combine exceptional mechanical performance with a refined, non-reflective finish, making them ideal for both functional and aesthetic applications. Manufactured from high-quality carbon fiber, these tubes offer superior strength-to-weight ratios, excellent rigidity, and corrosion resistance, all while presenting a sophisticated matte appearance that reduces glare and enhances visual appeal.

Key Features and Benefits

  • Premium Strength-to-Weight Ratio: Carbon fiber tubes are renowned for their high tensile strength while being significantly lighter than metals such as steel and aluminum. This allows for reduced overall weight without compromising structural integrity.
  • Matte Finish for Low Reflectivity: The matte surface absorbs light rather than reflecting it, making it perfect for applications where a subtle, glare-free appearance is desired — such as in photography, sports equipment, or aerospace interiors.
  • Corrosion and Chemical Resistance: Matte carbon fiber tubes are resistant to rust, oxidation, and most chemicals, making them suitable for both indoor and outdoor environments.
  • Excellent Dimensional Stability: Carbon fiber materials maintain their shape and mechanical properties under extreme temperatures and load conditions.
  • Aesthetic Versatility: The understated elegance of the matte surface enhances product design while ensuring professional-grade functionality.

Applications

  • Aerospace & Automotive – Lightweight structural components, aerodynamic parts, roll cages, and interior elements.
  • Sports Equipment – Bicycle frames, fishing rods, tripods, and camera rigs requiring reduced glare for professional filming.
  • Marine – Mast poles, paddles, and components exposed to harsh, humid environments.
  • Industrial – Robotics arms, precision measuring devices, and lightweight support frames.

Manufacturing Options

 

Matte carbon fiber tubes can be produced through roll-wrapping, pultrusion, or filament winding processes, depending on mechanical requirements and dimensional specifications. They are available in twill weave, plain weave, and unidirectional patterns beneath the matte finish, offering both structural and aesthetic flexibility.

 

Material Carbon Fiber Tube
Shape Round
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

 

Properties and Benefits of Carbon Fiber Tubes

 

Strength-to-Weight Ratio

 

One of the most significant advantages of carbon fiber tubes is their exceptional strength-to-weight ratio. Carbon fiber tubes are known to be up to five times stronger than steel while weighing only one-fifth as much. This makes them ideal for applications where weight savings are crucial without compromising structural integrity. The specific strength (strength per unit density) of carbon fiber tubes can reach values around 1500 kNm/kg, significantly higher than that of traditional materials like aluminum and steel. This property is particularly beneficial in industries such as aerospace, automotive, and sporting goods, where reducing weight can lead to enhanced performance and fuel efficiency.

 

Moreover, carbon fiber tubes can be customized to achieve even higher specific strengths for advanced applications, such as in the construction of space structures or high-performance sports equipment. The ability to combine different fiber orientations within a single tube can enhance specific properties like torsional strength or impact resistance. For example, hybrid carbon fiber tubes, which incorporate other high-strength materials such as Kevlar, can achieve tensile strengths up to 4.0 GPa, making them suitable for extreme environments and high-stress applications. The density of carbon fiber tubes typically ranges from 1.5 to 1.6 g/cm³, contributing to their lightweight nature and ease of handling.

 

Corrosion Resistance


Carbon fiber tubes exhibit excellent resistance to corrosion, unlike metals such as steel and aluminum, which can degrade over time when exposed to moisture and chemicals. This corrosion resistance makes carbon fiber tubes ideal for use in harsh environments, including marine, industrial, and chemical processing applications. The inert nature of the carbon fibers and the stability of the epoxy resin matrix contribute to this resistance, ensuring long-term durability and reduced maintenance costs. Carbon fiber composites maintain their structural integrity and performance in environments where metals would fail, contributing to longer service life and lower lifecycle costs.

 

The high corrosion resistance of carbon fiber tubes also translates into significant cost savings over the lifecycle of a product. For instance, offshore oil and gas platforms use carbon fiber tubes for risers and other structural components to avoid the frequent and costly maintenance required for steel alternatives. The annual maintenance cost for steel risers can exceed $100,000, whereas carbon fiber risers require minimal upkeep, potentially reducing maintenance costs by up to 80%. Furthermore, the non-reactive nature of carbon fiber makes it an ideal choice for biomedical applications, where biocompatibility and resistance to body fluids are essential for long-term implants and prosthetics. Carbon fiber composites do not elicit immune responses, making them suitable for medical implants such as prosthetic limbs and spinal rods. The chemical inertness of carbon fiber, combined with its mechanical properties, ensures that it can be used in environments where other materials would fail or require extensive protective measures. Carbon fiber's biocompatibility reduces the risk of adverse reactions and extends the lifespan of medical devices and implants, often exceeding 20 years without degradation.


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+8619537611058
+86-13681832139
+86-13681832139
+86-13681832139