/ Carbon Fiber Pole

Carbon Fiber Pole
Carbon Fiber Pole
Carbon Fiber Pole
Carbon Fiber Pole
Carbon Fiber Pole
Carbon Fiber Pole

Carbon Fiber Pole

Xinbo Composites supplies carbon fiber poles in a wide selection of lengths, diameters, thicknesses, and layup designs to meet specific application requirements. This flexibility allows for tailored solutions for various industries.

Material: Standard Modulus / Intermediate Modulus / High Modulus / Ultra High Modulus Carbon Fiber

Patterns: UD, Twill or Plain

Max Diameters Range: up to 500 mm

Wall Thickness: 0.6 - 50 mm

Max Lengths: Up to 6000 mm

OD Tolerances: Raw Tubing: ±0.1mm

Polished Tubing: ±0.02mm ~ ±0.05mm, Painted Tubing: ±0.10mm

Surface Finish: Raw, Polished, Glossy & Matte Clear Coated

CNC Machining: Drilling, Cutting, Grinding, Slotting, Milling Holes

Assembly and Bonding: we use the strongest adhesive and bonding tubes with aluminum or plastic parts, and assemble them as customers' requirements.

Description

Xinbo Composites supplies high-quality carbon fiber tubes for your projects, with customized dimensions, surface finishes, CNC machining and mechanical strengths.

Carbon Fiber Poles Advantages

1. Lightweight than Stainless Steel, Aluminum
2. Excellent strength, superior stiffness
3. Good Fatigue Resistance
4. Anti-Corrosion
5. Low Thermal Expansivity
6. Low Density
7. Exceptional Durability

Customize Carbon Fiber Pole Processes

1. Roll-Wrapping
Carbon Fiber Tubes are manufactured using multiple layers of prepreg carbon fiber. The number of layers allows us to vary the orientation of the fibers throughout the thickness, creating high-performance products according to per client’s requirements. With 3k weave or UD surfaces,
2. Filament winding
Filament wound carbon fiber tubes have very long continuous fibers which add to the strength and stiffness of the structure. The manufacturing process allows for longer carbon fiber tubes than our standard roll-wrapping process.
3. Pultrusion
Pultruded carbon fiber tube are produced by pulling linearly oriented carbon fiber ton through a resin bath and then a series of tooling to create the specified inner and outer diameter tubes. The composite tube is then heated to cure it. Carbon tubes are high tensile due to the unidirectional fibers.

Carbon Fiber Pole Applications

Robotics and Automation
Telescopic pole systems
Metrology instrumentation
Carbon fiber Idler rollers, driveshaft
Drone components
Telescopes
Industrial machines
Aerospace applications
Sporting goods