Advantages of Carbon Fiber:
Lightweight Performance
Density: 1.5–2 g/cm³ (1/4 of steel, 1/3 of aluminum) → 30–70% weight reduction
Critical for automotive, drones, sports gear — boosts mobility & energy efficiency
Strength Surpassing Steel
Tensile strength: 3,000–7,000 MPa (5–10× stronger than steel)
Superior fatigue resistance → extends service life of wind turbine blades, robotic arms
Extreme Environment Adaptability
Withstands -50°C to 300°C → ideal for aerospace components & braking systems
Acid/alkali corrosion proof → durable solution for chemical plants & marine engineering
Multifunctional Capabilities
Electrically/thermally conductive variants (e.g., semiconductor parts)
X-ray radiolucency → medical CT tabletops: 50% lighter with zero imaging artifacts
Core Application Fields of Carbon Fiber:
Aircraft fuselages, satellite components, rocket nozzles → 20% fuel savings via 50% weight reduction (e.g., Boeing 787: 50% CFRP adoption)
Formula 1 monocoques, EV battery trays → 40% lighter with 200% crash energy absorption
Golf shafts, bicycle frames, tennis rackets → 27% swing speed increase + vibration damping
Lightweight armor, UAV bodies, missile casings → Stops 7.62mm rounds at 1/3 steel weight
Ship hulls, offshore platforms → Zero corrosion in seawater pH 8.1 for 50+ years
MRI/CT scanner components → Zero magnetic interference + 50% weight reduction
EMI shielding for 5G base stations
High-end watch cases (e.g., Richard Mille) → Survives 5,000G impacts
Carbon-soled running shoes → 30% energy return enhancement
The following displays the basic information of the fabric
| Item | Data | Tolerance |
| Raw Material | Carbon Fiber | / |
| Length (mm) | 5~25 | ±0.5 |
| Diameter (μ m) | 7.0-10 | / |
| Net content (%) | ≥99.5 | ±0.05 |
Customization Scope
Length
Raw Materials
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