

Carbon Fiber Drone Propeller — High-Performance Prepreg Molded
Prepreg-molded carbon fiber propellers for industrial and racing drones. Optimized airfoil design with balanced blade geometry for maximum thrust efficiency. 3-5× stiffer than nylon/plastic props, reducing blade flutter and improving flight stability. Available in common sizes or custom diameter/pitch.
Key Features
Applications
Specifications
- Material
- T700 3K Prepreg Carbon Fiber
- Process
- Compression Molding + CNC Balancing
- Stiffness vs Nylon
- 3-5× Stiffer
- Available Sizes
- 5-30 inch (Custom Available)
- Hub Mount
- Standard T-Mount / Custom Quick-Release
Usually respond within 24 hours
Frequently Asked Questions
What is the minimum order quantity for carbon fiber products?
What color and finish options are available?
What is the typical lead time?
Related Articles

Thermoplastic Blade Welding: Automated Assembly for Large Wind Turbines
Wind turbine blade assembly has traditionally relied on structural adhesive bonding to join blade shells to spar caps and shear webs — a process that requires 8-24 hours of cure time per blade, demands precise surface preparation, and creates permanent joints that cannot be disassembled

Pultrusion Continuous Spar Cap: High-Volume Wind Blade Manufacturing
The wind energy industry is experiencing unprecedented demand for larger, more efficient turbines, with offshore installations now reaching 15 MW+ capacity. As blade lengths exceed 100 meters, the spar cap — the primary load-bearing structure running along the blade's length — has becom

CBAM Pre-Declaration Compliance Guide for CFRP Wind Blade Exporters
The European Union's Carbon Border Adjustment Mechanism (CBAM) represents one of the most significant regulatory shifts in international trade for composite materials manufacturers. With the extension to CFRP wind blade components taking effect on August 12, 2026, exporters must now pre

3D-Printed Blade Core Structures: Net-Shape Sandwich Cores for 100-Meter-Plus Blades
A modern wind turbine blade is, in structural terms, a sandwich construction wrapped around two load-carrying spar caps: thin, stiff outer skins separated by a low-density core that stabilizes them against buckling and carries shear. The skin is carbon or glass fiber laminate; the core

Thermo-Blade-Spine: Automated High-Rate Thermoplastic Blade Production in High-Wage Countries
Blade manufacturing is one of the last largely manual steps in wind turbine production. A thermoset blade of 100 meters needs hundreds of hours of hand layup, a multi-hour curing cycle in an oversized mold, and a workforce that scales with global blade demand. For factories in high-wage

RTM Tooling and Seal Design: Injection Gates, Vent Placement and Compression Molding Tolerance
Resin transfer molding has become the standard route for medium-to-high-volume carbon fiber parts — automotive structural components, aerospace secondary structures, bicycle frames, and industrial parts — because it combines near-net-shape geometry, Class-A or engineering surfaces on bo