Advantages of Carbon Fiber Laminates:
Lightweight Design
Density: 1.5–2 g/cm³ (1/4 of steel, 1/3 of aluminum) → 30–70% weight reduction
Enhances mobility & energy efficiency in automotive, drones, and sports equipment.
Strength Superior to Steel
Tensile strength: 3,000–7,000 MPa (5–10× stronger than steel)
Exceptional fatigue resistance → extends service life of wind turbine blades, robotic arms.
Extreme Environment Resilience
Withstands -50°C to 300°C → ideal for aerospace components and braking systems.
Acid/alkali corrosion resistance → durable solution for chemical equipment and marine engineering.
Multifunctional Potential
Conductive/thermal-modified variants (e.g., semiconductor parts).
X-ray radiolucency → medical CT tabletops: 50% lighter with zero imaging artifacts.
Primary Application Fields of Carbon Fiber Laminates:
Aircraft fuselages, satellite components, rocket nozzles → 50% weight reduction boosts fuel efficiency (e.g., 50% CFRP in Boeing 787)
High-performance bodies (F1 monocoques), EV battery enclosures → Balances lightweight design with crash safety
Golf clubs, bicycle frames, tennis rackets → Enhances strength & reduces athlete fatigue
Ballistic armor, UAV airframes, missile casings → Lightweight + impact-resistant
Ship hulls, offshore structures → Resists saltwater/acid-alkali corrosion
EMI shielding housings; medical imaging devices (e.g., X-ray tabletops) → Zero interference & metal artifact-free
Premium watch cases, athletic shoe soles → Fuses technological edge with durability
The following displays the basic information of the fabric
| Item | Data | Tolerance |
| Appearance | Unidirectional/Plain/Twill | / |
| Surface Treatment | Matte/Glossy | / |
| Length/Width (mm) | 10~1500 | 10 |
| Thickness (mm) | 0.2~100 | ±0.05 |
| Raw Material | Carbon Fiber | / |
Customization Scope
Appearance
Surface Treatment
Size
Thickness
Raw Materials
CNC (CNC Engraving) Services
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