High Strength Woven Carbon Fiber Fabric
Premium PAN-based woven reinforcement delivering minimum 4200 MPa tensile strength — engineered for primary load-bearing structures where superior strength-to-weight ratio is critical.
High Strength Carbon
High Strength Woven Carbon Fiber Fabric is manufactured from premium PAN-based precursor fibers processed to achieve maximum tensile strength — exceeding 4200 MPa at the fiber level. This fabric is designed for structural applications where tensile load capacity is the primary design driver. The woven architecture provides balanced 0°/90° properties while maintaining exceptional strength. Available in plain, twill, and satin weaves with areal weights from 200 to 800 g/m². The fabric features a specialized sizing that optimizes fiber-matrix adhesion, ensuring efficient load transfer in high-stress environments. Suitable for aerospace, automotive, wind energy, and infrastructure applications demanding superior tensile performance.
Core Advantages
Product Characteristics
Application Scenarios
Frequently Asked Questions
High strength carbon fiber (≥ 4200 MPa) is produced from premium PAN precursor with optimized carbonization conditions to maximize tensile strength. Standard modulus fibers typically offer 3500–3800 MPa. High strength fibers provide approximately 15%–20% higher tensile performance for critical load-bearing applications.
High-performance structural epoxy systems (Tg ≥ 180°C) are recommended to fully utilize the fiber's tensile capability. The resin should have strain-to-failure exceeding 2% to avoid premature matrix cracking. Toughened epoxy systems enhance impact resistance.
Yes. The fabric is fully autoclave compatible. Recommended pressure: 5–7 bar; temperature: up to 180°C. The high-strength fibers maintain their properties under elevated temperature processing, enabling optimal fiber volume fraction (58%–62%).
With vacuum bagging: 55% – 58%. With autoclave or compression molding: 58% – 62%. The fabric's weave structure allows high compaction without significant fiber distortion, maximizing the benefits of the high strength fiber.
English
中文简体
عربى
Tiếng Việt